DIY Robotics: The New Era of Automation

You’ve most likely been hearing much more about robots and robotics technology in the course of the last couple years. That is on the grounds that for the first time since the 1961 introduction of GM’s Unimate, viewed as the first industrial robot, the field is by and by changing world economies. Just this time the effect will be more extensive. A lot more extensive.

Today, robots are springing up in workplaces, emergency clinics, and schools, quite non-industrial environments, just as in warehouses and small assembling centers. To an ever-increasing extent, they are on our streets and flying overhead. Also, that is simply to give some examples in which robots are quickly picking up by doing work all the more proficiently, dependably and for less cash than previously conceivable.

That has got many individuals energized and a lot of others stressed. The staggering pace of advancement in the business has brought up heaps of issues. It’ll likewise give you an idea about an industry that is ready to drive $135.4 billion in spending by 2019, one whose significance to business and everyday life in the coming decades can’t be exaggerated.

Similarly, the DIY inclination in robotics technology is not something new. Falling sensor costs, quick prototyping, plenty of shoddy microchips, and a supportive network of creators have all added to fans making everything from clever bots that secure your valuable Girl Scout treats, screen rainfall, and gatekeeper the castle to more helpful machines created to serve. Kickstarter is lousy with robotics and drone projects, some of them lousy, others cool from ambitious beginners.

In parallel to and helping the DIY development, there’s another significance in robotics on bringing barriers down to the entry for robotics programming. New sensor-embedded garments, for instance, as well as virtual reality modules, enable anybody to end up being a robotics engineer. As programming-by-demonstration advances, the customization of use cases for robots is just to develop.

QtPi is a DIY robotics startup which guides children on how to think rather than what to think. According to Jasion Leon, QtPi co-founder, today’s children are in buyer mode. They have such a significant number of mobile applications and devices around them that we are never ready to give them into the affection for creating things. They have a truly limited capacity to focus and it requires more exertion to get them associated with utilizing their own creative energy to make things. Sadly, our education system additionally does not empower these sorts of exercises and more emphasis is laid on completing the prospectus and granting theoretical knowledge as opposed to giving the practical knowledge.

With the world quickly moving towards robotization, it is important to make the future generation prepared with the abilities required at the spearhead of the fourth industrial revolution. In this manner, the QtPi founders are expecting to make them tackle genuine issues and progress toward becoming business visionaries, as opposed to picking up programming languages to get a new line of work.

Similarly, Sphero, a Boulder-based robotics enterprise best known for its rolling robot toys that improve STEAM abilities, including an entirely clever BB-8 droid, is out with another DIY robotics platform of its own. Called RVR, the robot looks a great deal like an RC vehicle, just it’s endlessly hackable and intended to allure coders of all levels to think of innovative use cases, a departure in a swarmed field of STEAM products pointed exclusively at novices.

The procreation of computer, Internet and mobile expanded the number of white-collar occupations in India. Correspondingly, cloud, AI and robotics will bring home another set of opportunities for organizations with hardware and programming turnkey arrangement abilities.

While worldwide, organizations are occupied with distinguishing a few use cases for these technologies in various enterprises, in the meantime, it is additionally important to bestow these essential aptitudes at a primary level. Our future generations should be prepared with a range of abilities of the 21st century so as to endure, which incorporates creative thinking and DIY aptitudes. According to a January 2016 report, worldwide innovation can execute 5 Mn occupations by 2020. Truth be told, by 2021, one out of four employment cuts might be from India, according to a PeopleStrong report. In this way, building abilities at the ground level will end up important in times to come.

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Wake Up India! The Robots Are Coming To Fuel the Future

India being a developing country is undergoing loads of changes especially in terms of technology. The underpinning of the latest disruptive technologies is evidently the next big thing happened after the emergence of computers in the country. Well, today the plot of revolution is not stuck to one technology rather it’s a plethora of far-fetched technologies that fuel the mechanism of software, hardware, and internet. Above all, one miraculous tech-fueled development in this machinery world is Robotics. Yes, it is one such vertical development in technology that we have been witnessing from some time now.

India and Robotics: A Small Glance

Have you ever given it a thought – Why most of the countries aboard have Indians working for them? All around the world India is famously known for its tech-based academic curriculum. There is no element of surprise in it that opting for robotics as a focused discipline, the nation turned out to the gigantic hub for robotics including Studies, Technology, Research and Development, and Possible Applications.

With the emergence of Make in India initiative, Robotics as a key player continues to allure global investments to India which will eventually make it a bonafide stalwart of robotics savvy.

At present, our routine revolves around the virtues of the internet and certain AI technologies. Who would have thought of a today like this, a decade ago? The same is likely to happen in context to Robotics. Considering the present consequential developments in the discipline, we can predict the future full of bots.

What Robots Are Envisioned to Pull Off? … Understanding the Creative Potential of Robotics

Ever heard of Roomba Cleaner? It’s a perfect but simplified and menial example of applications of robotics in daily life.

Roomba Cleaner a robotics vacuum cleaner sold under the flagship of iRobot. The cleaner on wheels is mapped on the base of object sensing. It is capable of cleaning the entire space and can also decipher the areas that have been cleaned or which have not. It is able to change its direction if any obstacle detected in the way. Although the proportionate amalgamation of AI and Robotics is so far a great achievement yet there can be a more advanced implementation of such technology in the existing world.

Robotics can be employed for defense services, service provider centers, and customer service in trade and retail chains. It can help you, interact with you, or if needed can replace you any hour.

Not only with Artificial Intelligence, if robotics paired with machine learning, computing, hardware, and legitimate software, can bring about prodigious transformation in most of the things we do.

With the speeding up technologies and accelerated investment recognition, the dreams robots and a robotic world of our imagination can be carved soon.

Robotic World: A Thing of Today or A Matter of Future?

Robots can be spotted in all the vital sections of society be it a house, government administration or business hubs. They are even replacing labor workforce in typical warehouse job that happens in the dangerous environment causing life-risk for mortals. Thanks to the immense potential of robots in such jobs, warehouse automation in the Indian market has depicted a remarkable growth in the past couple of years.

While discussing robots, how can we not talk about Sophia! Sophia is an AI-driven robot who has been granted official citizenship of Saudi Arabia. It was developed by Hong Kong based company Hanson Robotics and is capable of emoting 50 facial expressions.

On the other hand, recently, the Indian Army announced that it wants 33.3% (approximately 1/3rd) of its operations to become robot-driven. Also, the US Army has already embraced 20,000 robots in its barreling.

Will Robots Eliminate Human Employment?

Unemployment has always been a burning issue in India. For a country which is populated with a maximum number of youths, it is extremely challenging to risk jobs for the sake of development. The intrusion of robotics may impact the already declining job market in the Indian subcontinent.

Considering the trends of previous industrial revolutions, we can frame that the fourth industrial revolution might affect the existing job opportunities but in a long run, it will definitely create new collar jobs with better opportunities to explore. Rightly foreseen by the experts, robotics will create new entrepreneurship and back prevailing companies’ survival. Economically, it will augment the GDP of India.

Wonders of Robotics – Near Future Vs Far Off Reality

There are no second thoughts about the fact that robo-technologies are all set to transform the country for a better and beautiful future. It will change the ways things are done and implemented.

For example, the FlyZoo hotel in China has reshaped the future of hospitality culture. This window to robotic hospitality shows the bright and shining future of robotics in other sectors too.

With the emergence of huge opportunities and demands the adoption rate of robotic technology will be rated high in near future.

In coming years as well as in far off reality, robotics will bring exciting and fresh prospects for every sector and every individual.

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Top 10 Robotics Engineering Universities in 2019

Top 10 Robotics Engineering Universities in 2019

Robots are automated machines that can help people in an assortment of settings, from assembling processes to working in complex conditions, unsatisfactory for human life. Robotics experts plan to accomplish assorted tasks by structuring mechanical devices, ready to finish them keenly. Robotics is identified with other science subfields, for example, software engineering, character animation, machine structure, cognitive science, bio-mechanics. Primary subdivisions of robotics include android science, artificial intelligence, nano-robotics, robot surgery.

Considering robotics, students will get data associated with computer graphics, gadgetry, mobile robot programming, robotics movement strategies, numerical algorithms, social implications of innovation etc. Other than from learning explicit scientific procedures, graduates will pick up aptitudes that include mathematical reasoning yet additionally imaginative vision. Robotics will make masters ready in abilities, for example, technology design, programming, repairing and introducing hardware for machines etc. Robotics has been undergoing rapid development, so studying won’t be easy as you may think. Hopefully computer science homework help is always available online such as Do my Programming Homework. After all, there’s nothing to worry about, if you’re passionate about it and ready to work hard. Let’s look at the top robotics engineering universities.

Carnegie-Mellon University

Image result for Carnegie Mellon University logoThe Robotics Systems Development program at Carnegie Mellon University isn’t your normal mechanical autonomy science certificate. An advanced program for smart graduates, the MRSD integrates technical skills and engineering coursework with an accentuation on business and project management. All things considered, it is perfect for students who seek to work in the business segment, where engineers are bound to work in groups and fiddle with various parts of the organization– notwithstanding product development and marketing.

In spite of the fact that research might be a possibility for MRSD understudies, a large portion of them are bound to finish an entry-level position. Given that organizations like Lockheed Martin, Google, Intel, NASA, and Tesla are all keen on hiring CMU robotics engineering degree students, it’s very certainly worth the trade.

Colorado State University

Image result for Colorado State University logoColorado State University’s aim is to guarantee students can understand their dreams and influence the world through access to inventive and pertinent scholastic programming, a unique student involvement, remarkable faculty and staff, research and new information disclosure to comprehend worldwide difficulties, and best in class working and learning conditions.

Colorado State University is perceived as one of the premier research foundations and routinely positions itself at the highest of every single American University in research consumptions. The Office of the Vice President for Research has overall accountability of encouraging the research endeavor at Colorado State University. The Office attempts to empower and bolster the improvement, advertising and use of Colorado State University’s intellectual property and its incredibly famous analysts, students and facilities.

University of Michigan-Ann Arbor

Image result for University of Michigan-Ann Arbor logoWith undeniable robotics engineering degrees for both ace’s and PhD students and an amazing research program that envelops six particular center zones, the University of Michigan makes a truly persuading case for its consideration close to the highest priority on our rundown. U of M even permits first-year graduate students to get hands-on experience immediately by taking a Robotics System Laboratory course. Whatever is left of the educational modules is part between three center territories: Sensing, Reasoning, and Acting.

University at Buffalo, The State University of New York School of Engineering and Applied Sciences

Image result for University at Buffalo, The State University of New York School logoUB’s School of Engineering and Applied Sciences – or UB Engineering, to utilize its ordinary name – is the biggest and most comprehensive government-funded school of engineering in New York State. UB Engineering is at the focal point of technological innovation in its locale, state, country and universally. UB burns through $386.6 million every year on research, looking for information that prompts new fixes, improved procedures, more grounded materials, quicker PCs, more brilliant programming, small machines and a lot many different upgrades.

Georgia Institute of Technology

Image result for Georgia Institute of Technology logoStudents who are searching for a robotics engineering degree should consider Georgia Tech’s School of Interactive Computing, an imaginative unit that “intends to reclassify the human experience of computing.” Within this unit, graduate students can pick up a specialization in Computational Perception and Robotics. This specialization will guide them through complex – however cool – coursework in Robot Intelligence: Planning, Machine Learning, and Computational Photography, among others.

University of Pennsylvania

Image result for University of Pennsylvania logoWith more than $700 million in yearly R&D consumptions, Penn is one of the country’s best research colleges, not just creating imperative new learning in the fields of medicine, innovation, business, science, and more than that, however applying this information to improve the lives of people and communities at home and around the globe. Creative research that yields significant learning is one of the foundations of Penn Compact 2020, President Gutmann’s vision for the fate of the University.

Oregon State University

Image result for Oregon State University logoOregon State University earned $441 million in external research financing in 2017, a third successive year of record-breaking development. Oregon State is one of just two land, ocean, space and sun grant foundations in the U.S. and is the main college in Oregon to have earned both Carnegie Classifications for Highest Research Activity and Community Engagement. It is the state’s biggest far-reaching state-funded college, overwhelming for both academic accomplishment and the direct impact of applied development, satisfying the land-grant mission to serve the public good.

Massachusetts Institute of Technology

Related imageAt the Massachusetts Institute of Technology, there are such huge numbers of labs, organizations, and research groups that it tends to be difficult to follow along! Of the considerable number of colleges discussed about robotics engineering degree ranking, MIT is maybe the most far-reaching and research-escalated. Truth be told, the Computer Science and Artificial Intelligence Laboratory (CSAIL) is the biggest research center at MIT and is home to more than 1,000 individuals, 100 principle investigators, and around 50 research groups.

University of Southern California

Image result for University of Southern California logoWith an M.S. degree in Intelligent Robotics, the University of Southern California is one of the main schools in the nation to really offer an undeniable, an all-through mechanical robotic engineering degree. The courses included inside this program are about robots, robots and robots. As a master’s student in the USC Viterbi School of Engineering, you’ll start your studies with classes in Robotics and the Foundations of Artificial Intelligence, stir your way up to courses like Intelligent Embedded Systems and Nanorobotics, at that point round out your degree with directed research and internship position openings.

University of Maryland

Image result for University of Maryland logoOf the considerable number of degrees included in this rundown of robotics engineering universities, the University of Maryland’s program is the most balanced. The M.S. in Systems Engineering at UMD consolidates a few unique territories of interest, and students have opportunities to find out about business, human factors, and even public policy, alongside their technical forte and research. If you plan on doing research, head to the Maryland Robotics Center, where you’ll discover more than 30 faculty staff researching everything from smaller than usual robots for nanomanipulation to unmanned robots for space research.

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When Robots change the Retail Industry, leveraging robots in the age of Amazon and Walmart

Robots in Retail

Automation is evolving and slowly changing all the industries, the retail industry is not left far behind where shippers, retailers and restaurants are experimenting with robots, self-driving cars and drones in a bid to use automation to drive down the high cost of delivery.

The Case of Walmart

Case I

Walmart is working hard to reduce customer pain points in stores, which include a long line wait or the trouble to find an item. Recently Walmart, announced that it will deploy shelf-scanning robots in more than 50 of its stores to help in making inventory management more efficient.

The two feet tall robot comes with a telescoping tower outfitted with cameras and lights. As the robot passes down an aisle, it scans the shelves to see where the items are low in quality in addition to checking for the correct information or mislabelling errors. Walmart says it wants to use robots for tasks that are predictable, manual and repeatable, thus insisting that robots won’t replace human workers or affect headcount.

Case II

Walmart additionally plans to bring robotic floor scrubbers to its 360 stores by the end of the year. It has launched a new app, Dotcom Store, allowing associates to order products for customers on Walmart.com whenever they are out of stock on the shelves.

Walmart relies on 920-pound self-driving scrubbers, also known as “Auto-C,” deploying automated technology to navigate marked routes in the store to mop up the floors, navigating on sensors to scan for disturbances like people and aisles.

Walmart has tested automation to make its work easier which includes, checking items on the shelves, unloading boxes from delivery trucks, selecting items for online grocery and changing price labels on products. The giant is experimenting with a bot in around 500 stores which can unload boxes off delivery trucks to automatically scan and sort the items by department.

In the Future, Walmart foresees robots communicating with each other to deliver customer satisfaction and drive engagement.

All the cases discussed above fall into lines what CEO Doug McMillon calls “tech-empowered stores.”

FedEx

FedEx has collaborated with the DEKA Development & Research Corp, which invented the iBot stair-climbing wheelchair and the Segway stand-up scooter. The delivery company views that this service operating in 1,900 cities around the world will push the same day deliveries for the retail giant. These battery-powered robots have cameras and software which help them detect and avoid obstacles on their path as they move at a speed of about 10 miles (16 km) per hour.

Amazon

The retail giant has introduced its cashier-less Amazon Go stores which have experimented with drone deliveries, thus rolling out tens and thousands of robots to shuffle goods at its delivery centres. These robots are named as the Amazon Scout delivery robots and are armed with six wheels which propel the top-lidded robot along the sidewalk at a walking pace. The company presently offers six Scout units on the routes available only on weekdays and during daylight hours for safety measures. To begin with, an Amazon employee will be chaperoning the Scouts in a bid to make sure that the little robots don’t go off to smoke in back alleys. In addition, the Scout will be powered with a sophisticated array of sensors which will prevent the robot from bumping into pets, pedestrians or any other potential obstacles while manoeuvring the streets.

Flipkart

In an innovative move, to make ease deliveries, Walmart owned Flipkart recently deployed an army of robots at its Bengaluru delivery hub. According to the Indian giant, these robots can perform at 10 times more efficiently, compared to human beings. At present, Flipkart has decided to deploy robots at its delivery hub for streamlining its supply chain in India.

These robots, known as Automated Guided Vehicles or AGV, have been stationed at one of its major delivery hubs in Bangalore. At present, the company employs a total of 100 such AGVs which have started operations.

Flipkart views that these robots will help the company to reach 200 million customers helping the company solve for scale, solve for precision and solve for efficiency. These is based on the fact that one single robot is capable of sorting 4500 products in an hour, a figure 10 times more than what a human can do.

Flipkart has deployed these robots, which at present have been programmed to accomplish three basic tasks i.e. picking products from a conveyor belt, scanning them and dropping them on a chute, which is assigned to a specific pin code. These robots have been powered with anti-collision technology, to not get bumped into each other, while performing their tasks.

In the quest to achieve the best, the e-commerce retail industry is locked in a head-to-head battle over efficiency and supremacy where robots will play an increasingly large role in deciding who wins the race making consumers get what they want and when they want it.

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The Assistance of Robotics and AR to Those Having Physical Disabilities

Robots for Diability

Researchers at the Georgia Institute of Technology have created a system by combining two technologies which are redesigning the modern world; improving reality and robotics. And this system increases hope of those, who are suffering from some types of motor damages. It would also let these people move and undertake the regular chores which would be unfeasible.

The new system would allow these individuals to move and take on daily tasks that would be otherwise impossible.

“Be My Eyes and Hands”

Out of the world’s total population, 15% or 1 billion suffer from different types of disabilities. According to the report published in the journal PLOS ONE, this new system can assist those who fail to perform motor skills, perform tasks like brushing their teeth, feeding themselves, or simply picking up a book to read.

Therefore, people like to turn on a humanoid robot to help finish these tasks as the robot’s web-based interface present allows the user to see their surrounding environments through the lenses of the machine, significantly improving the quality life of the disabled.

The aim of the Georgia Institute of Technology was to look at ways to make the complex robots that are currently available, more accessible to those with disabilities. Those with limited motor skills could, in fact, control a robot using standard assistive computer access technologies like eye trackers and head trackers.

Phillip Grice, a recent Ph.D. graduate Georgia Institute of Technology who is the first author of the paper told, “Our results suggest that people with profound motor deficits can improve their quality of life using robotic body surrogates. We have taken the first step toward making it possible for someone to purchase an appropriate type of robot, have it in their home and derive real benefit from it.”Improving the Quality of Life

The study was divided into two parts. The initial study arranged 15 participants with higher motor impairments and also learned the functioning of a PR2 robot, which has 20 degrees of freedom, with two arms and a “head”.

It has also been noticed that 80% of participants could control the robot remotely to help them pick up a bottle of water and carry it to a mouth.

Grice says, “The participants were able to perform tasks effectively and showed improvement on a clinical evaluation that measured their ability to manipulate objects compared to what they would have been able to do without the robot.”

In the second part of the study, researchers let Henry Evans, a California man who has been helping Georgia Tech researchers in the study and advance assistive robotic systems, fetch the PR2 system home for seven days.

Evans could create unique ways to take care of himself and tried on himself wash and brush himself by means of the PR2 robot. “The system was very liberating to me, in that it enabled me to independently manipulate my environment for the first time since my stroke,” said Evans.

With the decrease in the price of complex robotics, tools like PR2 could become a possible option for those with motor impairments in the very near future.

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Robotic Agriculture Will Provide Sustainable Assistance to Farmers in Feeding the Mouths

Robotics in Agriculture

The fast-paced world is moving ahead with evolving basic humanitarian needs. Sometimes we don’t even realize that we are surrounded by technologies even in our closed knitted envelops. Various industries and businesses have adapted to the tech-world shifting to the plethora of digital transformation.

But little do we think that agriculture is the most basic entity of industries, is also going through a lot of reforms with the rising of technologies.

Due to a shortage of labor and accelerating need to feed the large population around the globe, Agriculture Robots have jumped into the picture. They are becoming a common yet useful assistant of farmers in various works.

As the tech industry is still in the dawn of agri-robo revolution, most of its models are still in trial and research and development zone.

Other than that the technologies that are currently deployed in the agriculture industry are as follows:

Drones for Aerial Imaging

• These are among the first robotic applications adopted by farmers to save time and labor involved in going out for visual checking on a crop.

• Such drones are well-equipped with various features including – (a) multi-spectral and photo cameras for monitoring crop stress, plant growth and predict yields, (b)more advanced drones that are able to carry and deliver props like herbicides, fertilizer, and water.

• This technology can be utilized through a drone-as-a-service type operation.

• The drone has a feature of scheduled flyovers or can be stored on site and used when needed

• The drone is stored at weatherproof docking stations.

• These stations allow the drones to recharge and send data back for analysis.

Robots for Spraying/Weeding

• Making the use of images collected by drones of weed, companies train the robots to identify and pluck weeds.

• These robots are also trained to apply pesticides directly on the weed.

• Robotics technology employed for this duty will prove to be a huge boost for both the farmers and the environment.

GPS System for Auto Steering/Navigation

• With the effectiveness of the GPS system, the farmer can enable their tractors to automatically run on the field and perform agricultural activities required.

• Most of these autonomous devices and function come with a high degree of accuracy.

• Some are even designed to automatically adjust in hilly terrain region.

• The technology enables farmers to follow their tractors exact location and progress via smartphones.

• The machine learning technology that is needed to be encompassed with this activity for avoiding unusual situations, is yet not introduced completely and as a result, these run under the monitoring of operations.

Robotics for Fruit Harvesting

• Crops like strawberries, cucumbers and orchard fruit like apples have early focus on robotics for harvesting purpose.

• This innovation employs image processing and robotic arms to determine what to pick from the field.

• Quality control and grading of the fruits can also be done using these robotic operations.

• Also, by the virtue of data analytics based on crops, it becomes easy to identify business revenue and organize packaging and processing operations.

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Can you Pursue Robotics without a PhD?

We as a whole think about the move that organizations all the world over are enthusiastically embracing, regardless of whether they work in manufacturing, in business process outsourcing, or in data innovation framework. That is, the large-scale relocation towards automation of business forms that can be mechanized; in doing so, companies try to lessen waste and delays in deformities.

Also, in specific segments, this has involved the substitution of people by robots, if not the human robots we find in robot battle leagues on TV or in Japanese animes, at that point in automated assembly line systems that comprise of basic moving parts and machines. We see this especially in hardware and food manufacturing. They don’t look anything like what we accept they should resemble.

Therefore, an ever-increasing number of individuals are getting pulled in to this field for a flock of reasons, that including the intriguing and energizing career paths that robotics brings to the table. However, you don’t need a PhD to enter into a field like Robotics. Let’s see how!

Strong Programming Knowledge

In a wide sense, robotics technology is about sensors giving input to a framework that is playing out a task in real time. Robotics is truly at its developing stages, with different worldview conflicts and ubiquity challenges, both in the academic community and industry.

In case you’re searching for an academic career or want to transition to robotics, one route is to get into some math courses. Robotics warrants a noteworthy holdover at any rate college-level math, in particular, linear algebra, probability and calculus.

Organizations are constrained to hire you for a technical job ONLY in the event that you show proof of a solid foundation in programming and math just as the ability to do autonomous research. This makes robotics technology unique in relation to normal programming jobs where finding a rewarding line of work involves you being great at what you’re managing without essentially having a professional education.

Bachelor’s Degree

Bachelor’s degree in electronics engineering or mechanical engineering are among the most generally accessible college degree in schools and colleges and many offers focus on robotics. Electronics engineering programs show you the basics of electronics parts and normal electronic circuits. You’ll figure out how electronics are utilized in computing, radio correspondences, industrial control frameworks and power management applications.

Mechanical engineering projects instruct you to apply ideas from physics, arithmetic and materials science to make machines utilized in transportation, assembling, communication and different uses. These projects may likewise cover electronic, water driven and pneumatic frameworks. You should search for projects endorsed by the Accreditation Board for Engineering and Technology (ABET).

Internship

An Internship should be pursued if you have a bachelor’s degree and even if you are already employed but want to make a transition to robotics field. Take favorable position of entry-level positions offered at engineering and robotics technology organizations. You could arrange one yourself with smaller organizations that might not have a high industry profile. An internship can furnish you with work understanding and help you network inside the business. Your entry level position may involve close to watching work or you might be effectively engaged with a project. Besides, for people wanting to transition, ask for a switch to the robotics department in your existing company or work in a robotics specified project for some time where practical knowledge can be gained. Even if you cannot work, try at least observing the specifics of projects. This can help you in gaining insights and applying them in the real world.

Networking

Research demonstrates that up to 85% of individuals secure their jobs through networking. If you don’t know anybody right now working in robotics, it’s a great opportunity to change that. Look for nearby social events of people working in robotics and other tech fields. Be set up to discuss your profession objectives and what you can offer to businesses.

At this phase in your profession switch, it may not feel like you can offer a lot to the table concerning significant robotics mastery. In any case, consider different things you bring to the table from your previous job. For instance, perhaps you were a marketing proficient and taken a shot at projects that expected you to survey and address customer issues. All things considered, you’re most likely incredible at seeing the master plan and knowing how to accomplish fruitful results.

Be up to date

Robotics is a fast-moving division, and you can’t accept things in the business will remain moderately steady up to and past when you’re prepared to enter the work market and begin chasing for a robotics work. It’s brilliant to come up with a collection of robotics assets, for example, sites and online journals. Intend to read them every day, or if nothing else a few times each week.

As you digest the data, consider it critically by asking yourself how the things you read about could have short or long-term impacts on the robotics industry. Likewise, as you read about outstandingly creative robotics accomplishments, consider the advantages and disadvantages of such advancement. Challenging yourself to analyze the news like this keeps your knowledge current, in addition to that urges you to think beyond the words on the page.

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Want to Make an Advanced Robot? Beware of these Repercussions

The artificial intelligence age is here marching ahead to increase human productivity in multiple ways, transforming everything from transportation to education to healthcare. Some enthusiastic computer scientists even think humanity will find a “master algorithm” that will fix our politics and make lives “longer, happier and more productive.” In the grandest of these visions, smart computing machines could automate all of the scientific discovery.

As automation deploys itself into more and more uses, many people worry about the future of their work and the security of their jobs. Ever wondered what will happen if millions of human workers no longer have jobs, what will they do, how will they provide for their near and dear ones, and how will the society adjust to all these changes?

New research by the McKinsey Global Institute suggests that by 2030, roughly 15% of the global workforce could be displaced, and the jobs which are created will likely make up for this loss. As this happens, between 75 million to 375 million people globally may need to switch their occupational categories by 2030, depending on how quickly they can be adaptable to automation.

Recent technological changes have been biased towards automation, with insufficient focus given to create new tasks where labour can be productively employed. The recent stagnation in labour demand is explained by an acceleration of automation, particularly in the manufacturing industry, and a deceleration in the creation of new jobs. Rapid automation brings efficiency-driven productivity growth rather than focusing on value-added expansion, fails to create jobs, a situation which may eventually cause a social unease.

How to Harness New Technologies for Employment

Some economists have come up with suggestions that could help to navigate the risk of what AI and automation may cause notably mass unemployment and social chaos. New technologies could create as many jobs as they destroy if we pursue them in the right way.

In addition, and perhaps reflecting this shift in the composition of technological advances, which the economy has also experienced is a marked slowdown in productivity growth, contributing to a sluggish labour demand.

1. Over the last three decades,automation has destroyed more jobs than it has created, as reported by analysts.

2. A primary reason is that automation technology has not been good enough to create sufficient new work. This has led to stagnating productivity growth, a declining share of the economic pie for labour, and more inequality.

3. An aging population is a leading indicator of more automation to come. The shift to robots will pick up in industries which rely more on middle-aged workers.

4. Reskilling the existing labour force is equally important as it not only creates new skills but transforms the existing labour force to adapt to new skills to stay in business.

What Should be Done to Reduce this Gap?

Industry experts suggest and believe that there is a gap between the resources and the skills as demanded by the industry. Thus, it is imperative to provide transition support to help displaced workers or those struggling with transitions to new occupations as evolved by the industry.

The industry needs active use of digital technologies for job matching and stimulating the rise of independent work. When technologies are offered at the grassroot level the dynamism of labour markets can restrict the growth of migration, which is currently waning, like for example in the United States, the job reallocation rate has dropped by 25% between 1990 and 2013, pointing to a decrease in the share of workers relocating across state lines falling by half, close to 1.5%.

The educational institutions, labour organizations, governments and businesses have an important role to play here. Change-making institutions have a greater role to play, sharing the forward-looking knowledge, which means collaborating with a mix of skill and experience requirements.

In a nutshell, automation technologies have a lot more to offer for the productivity gains they bring along, even as the workforce transitions influencing adoption are well dealt with. The trade-off between productivity and employment is actually less than it might seem at first sight, since the GDP bounce that productivity brings will raise consumption and hence labour demand. This effect will be felt faster if the gains in value-added turn to be the gains in the hands of people who spent it. Thus, to conclude distributing income gains will translate productivity gains into the GDP growth with an increased focus on skills and training an urgent need of the hour.

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Analytics Insight Estimates Indian Surgical Robotics Market at US$129 Million by 2025

Surgical Robotics

Robotic Surgery or Surgical Robots has redefined the healthcare landscape in India, with its technology precision and higher success rate.

Robotic or robot-assisted surgery brings together advanced computer technology providing the surgeon with a high-definition, 10x magnified, 3D-image of the body’s intricate anatomy.

This futuristic surgery enables the robot to replicate the surgeon’s hand movements while simultaneously minimizing tremors. Surgical robots allow precision to the surgeons who can operate with control and enhanced dexterity even during the most complex procedures.

India’s first robot-assisted surgical procedure dates back to 2002, at a Delhi hospital which used the da Vinci surgical system from Sunnyvale, California-based Intuitive Surgical Inc. India’s cardiac surgeon Dr. Tejas Patel conducted the world’s first telerobotic surgery in Ahmedabad. The patient was a middle-aged woman with a blocked artery at Apex Hospital, located 32 kilometers away. Dr. Patel guided the robotic arms through a joystick to perform the coronary intervention.

Market Potential

According to Ashish Sukhadeve, Founder and Editor-in-Chief, Analytics Insight, the Surgical Robotics Market in India is predicted to witness a remarkable increase from US$129.9 million in 2016 to US$372.5 million in 2025, growing at a CAGR of 19.2%.

On a global scale, the market stood at US$4.9 billion back in 2016, a figure which is expected to grow to US$9.3 billion with a CAGR of 11.4% by 2025, indicating a huge potential of the surgical robots making healthcare a more flawless experience.

The Payback

Globally, robotics is deployed in surgeries for gallbladder removals, lung cancer procedures, on prostate, ENT, hair-loss treatment, spine surgeries and certain tumor procedures.

Robotic surgeries assure a healthier post-operative life, with minimal blood loss, quicker healing and return to normal activities, minimal scarring and shorter hospital stays for those suffering from life-threatening conditions in their reproductive, respiratory, urinary and digestive systems.

Risks Involved

Implementing surgical robots into operation does involve some hiccups. Finding qualifying surgeons who can implement these procedures remains a major roadblock to adoption. Add to it, the high-end da Vinci surgical system costs approximately $1.75 million along with annual maintenance and disposable supply costs that add to $1,500 per procedure. These high costs involved make the futuristic technology beyond the reach of many Indian healthcare systems.

Another approach to cutting costs is to encourage Indian companies to develop their own surgical robots, an alternative that could be a difficult task for the underfunded Indian robotics developers.

The Avenues of Adoption

So far, 30 Indian health facilities are performing high-end robotic surgeries nationwide. Of these, 12 are located in northern India, which includes Rajiv Gandhi Cancer Institute, Sir Ganga Ram Hospital, Fortis, Medanta, AIIMS, Apollo and Max Hospital.

In the western geography, eight hospitals deploy surgical robotics procedures which include the Kokilaben Dhirubhai Ambani Hospital, Sir HN Reliance Foundation Hospital, Tata Memorial Hospital and Jaslok Hospital.

Seven hospitals implement robotics surgery in southern India, an illustrative list which includes the Apollo Hospital (Chennai and Hyderabad), the Amrita Institute of Medical Sciences, Aster Medicity, Kochi and the Krishna Institute of Medical Sciences (KIMS). The Apollo Gleneagles Hospital, Kolkata is the only hospital in the eastern landscape that implements surgical bots in surgeries.

On a Futuristic Note

There are a number of Indian health facilities which offer robotic surgical procedures. This figure has grown impressively over the past several years, and there are some meaningful steps in this regard. Notable mentions include the Bengaluru-based Vattikuti Technologies which is promoting the adoption of da Vinci in India.

On a more hopeful note, a few medical services providers and doctors in India have come forward to create a curriculum that trains doctors in robot-assisted surgeries for a far reach adoption of this futuristic surgical technology.

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Top Robotic Applications That Will Surprise You

The applications of robotics have knocked the doors of uncharted territories, with the work increasingly been delegated to the robots working on them tirelessly. This has led to organisations saving considerable time to achieve increased levels of efficiencies. As the technologies change, these robots become more advanced and autonomous as they learn how to do jobs faster and better than humans.

So why have industries deployed robots at such a high scale? The reason is simple, their precision, intelligence and endless energy levels elevate them to become perfect employees for a wide variety of jobs ranging from supply chain management to healthcare. But these are the traditional robotic applications, that have been talked and discussed. Here are the niche 10 Top robotic applications that will surprise you.

Public Security

AI and robotics in public safety and security have been growing, leading to a more diverse and powerful force for good against the evolving threat landscape. From patrol robots that never take a break to predictive analytics at IoT scale, to game-theory based monitoring of harbours and airports automated security technology assisting enforcement agencies to maintain security enabling businesses, communities, and citizens stay safe.

Entertainment

Entertainment is another industry domain where robots are used to offer more personalized, and interactive experiences. Robots in the entertainment industry have been crowd attraction pullers. Consider the example of theme parks where giants like the Disney World are experimenting with autonomous robots to entertain park visitors and are receiving positive feedback from guests. In the filmmaking industry, robotic stunt doubles are used to perform risky stunts that enable filmmakers to record realistic action sequences without risking any injuries to the actors.

Agriculture

Agriculture has always faced the vulgarities of pests, erratic weather, soil conditions, and the changes in labour supply. Farming equipment in the current times have become much more sophisticated which can autonomously navigate, harvest certain crops, plant and filter out unwanted weeds. Milking machines have just ushered the beginning of robotics applications for the livestock industry. Robots are increasingly been used for pollution monitoring, plant nursing, and even planting or seeding new crops. Due to labour shortages, demand for robots has been high to pick and move fruit, in the horticulture industry.

Space

Robotic controlled machines give astronauts the chance to explore space in the most mind-boggling ways. The most commonly deployed space robots are the Remotely Operated Vehicle (ROV) and the Remote Manipulator System (RMS), both of which are used in a number of space missions. Robotics controlled ROVs can be unmanned spacecraft that orbit freely or land when it contacts an outer space surface to explore the terrain. Both the ROV and RMS capture remarkable data which give access to visual footage something which is difficult to achieve humanly if it is without the assistance of robots.

Remote Robotic Surgery

Robotic-assisted surgery has changed the face of the medical world as we look today. The healthcare domain has undergone a revolution expanding the surgeons’ capabilities in multiple ways. Like for instance, in complex surgical procedures, robots direct the human surgeons having the controls of the computer console to move instruments attached to robot arms. The surgeon’s movements are translated by a computer which are then performed on the patient by the robot. The medical procedures of today are so advanced that it is possible to perform medical surgeries by specialists who are located at different geographical domains. Such is the power of robotics.

Underwater Exploration

Underwater robots have radically changed the way we see the world from the ocean floor. The underwater robots can dive longer and deeper compared to any human, and provide an up-close look at marine life, a blessing for aquatic enthusiasts. The most commonly used underwater robots today are the remote-operated vehicles (ROVs) which are controlled by humans sitting in the command center. These sophisticated ROVs are connected by cable to ships and are dubbed as the best tool for gathering data and images of life under water.

Warehouse Logistics

Robots are essentially used in the logistic supply chain management as opposed to historically being limited to assembly-line operations. As industrial robots become more sophisticated and capable of handling more responsibility, manufacturers have begun to explore their deployment into the warehouse.

In a crux, besides industrial applications, robots have become a common occurrence in our homes too. Robots feed the elderly play and care for pets while their owners are out and so on.

The breakthrough from robotic deployment will be realised when companies gather and analyse real-world data to redesign what robots can achieve when programmed.

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