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MIT Robots Run Like a Cheetah



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MIT researchers have been making fast progress in developing a robotic mini cheetah. The robots can determine whether an object is made from plastic, paper, metal, and then they use the object's position, RFID tag location, to determine which one needs to be removed. They can also be tracked using electroluminescent zirconate particles. This article discusses the work that is being done to make robotics as realistic as possible.

MIT researchers take rapid strides to create a mini cheetah robot.

Roboticists have been wondering for years how animals can run at such high speeds. Researchers at MIT created a control program that allowed a robotic mini cheetah robot to run at 2.3 m/s. The new robot can also run faster than the treadmill's speed limit. Researchers are hoping that their robot will one day be able to run like a real cheetah.

The team at MIT has developed a running algorithm that allows it to manage its speed and force while navigating uneven terrain. The MIT robotic cheetah looks like a sprinter pushing harder on the ground to increase his stride force. Although the robot is expected to eventually reach 8.7 mph this is not yet a finished product.


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Robots can detect if an object is paper, metal or plastic

RoCycle robots developed by MIT researchers can identify whether objects are made of metal, plastic, or paper. The robot's tactile sensors enable it to distinguish between different types and materials. RoCycle's tactile sensors and soft Teflon covered hands make it easier to recognize different materials. This allows RoCycle the ability to distinguish between visually identical Starbucks cups made of paper and plastic.


Multiple sensors are embedded in the skin of the robot and allow it to distinguish between metal and paper. This makes tactile input a crucial part of determining whether an item is made of plastic, metal, and paper. To make the robot more human-like, researchers are improving its grasping and squeezing capabilities. On the website of the team, you can see the robot grasping objects.

Robots use RFID tags and pile objects to identify which item to take out next.

As it scans the pile of items, the robot updates its 3-D model with possible items. Once the robot has found the object, it can remove obstacles to retrieve it. Robotic reasoning uses probabilistic reasoning in order to identify the next item to be removed. Robots can use the size, shape and location of RFID tags to determine the best route to reach the target object. Thus, the robot can retrieve the targeted item in a minimum of movements.

The MIT robotics system scans the pile using radio waves and visual information. It then identifies any RFID tags. The robot can see through most solid objects thanks to radio waves, giving it excellent depth vision. The robot can also calculate the size and shape of an object to help it determine the best location to remove it. The robot arm's vision is combined with the RFID tag location allows it quickly and accurately to identify the target item.


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The electroluminescent zinc sulfurate particles can be used to track robotics easily

In the presence of high-frequency electricity fields, electroluminescent Zinc Sulfate (ELZS), particle can illuminate artificial muscles. The bright glow of these particles changes color depending on the chemical combination of the zinc sulfate particles. Scientists are attempting to improve the robot’s motion-tracking systems and illuminated actuators.

This technology can track a mitrobot by using three cameras on a smartphone. The robots can also send and receive control signals and signal each other during a search-and-rescue mission. Because the technology is so simple to use, it could be used for other applications as well, such as guiding a drone through a dark environment. Researchers even found a way to use electroluminescent zirconia sulfate particles in order to improve the properties and performance of soft artificial muscles.




FAQ

Are there potential dangers associated with AI technology?

Of course. There will always exist. AI is a significant threat to society, according to some experts. Others argue that AI can be beneficial, but it is also necessary to improve quality of life.

AI's greatest threat is its potential for misuse. The potential for AI to become too powerful could result in dangerous outcomes. This includes autonomous weapons and robot rulers.

AI could eventually replace jobs. Many people worry that robots may replace workers. Others believe that artificial intelligence may allow workers to concentrate on other aspects of the job.

Some economists even predict that automation will lead to higher productivity and lower unemployment.


How does AI work

An artificial neural network consists of many simple processors named neurons. Each neuron processes inputs from others neurons using mathematical operations.

Neurons are arranged in layers. Each layer has a unique function. The first layer receives raw information like images and sounds. These are then passed on to the next layer which further processes them. The final layer then produces an output.

Each neuron has an associated weighting value. When new input arrives, this value is multiplied by the input and added to the weighted sum of all previous values. The neuron will fire if the result is higher than zero. It sends a signal up the line, telling the next Neuron what to do.

This process repeats until the end of the network, where the final results are produced.


Why is AI used?

Artificial intelligence, a field of computer science, deals with the simulation and manipulation of intelligent behavior in practical applications like robotics, natural language processing, gaming, and so on.

AI can also be called machine learning. This refers to the study of machines learning without having to program them.

AI is being used for two main reasons:

  1. To make our lives easier.
  2. To be better than ourselves at doing things.

Self-driving car is an example of this. AI can do the driving for you. We no longer need to hire someone to drive us around.


Which countries are leading the AI market today and why?

China leads the global Artificial Intelligence market with more than $2 billion in revenue generated in 2018. China's AI market is led by Baidu. Tencent Holdings Ltd. Tencent Holdings Ltd. Huawei Technologies Co. Ltd. Xiaomi Technology Inc.

The Chinese government has invested heavily in AI development. The Chinese government has set up several research centers dedicated to improving AI capabilities. These centers include the National Laboratory of Pattern Recognition and the State Key Lab of Virtual Reality Technology and Systems.

China is also home to some of the world's biggest companies like Baidu, Alibaba, Tencent, and Xiaomi. All these companies are actively working on developing their own AI solutions.

India is another country which is making great progress in the area of AI development and related technologies. India's government focuses its efforts right now on building an AI ecosystem.



Statistics

  • According to the company's website, more than 800 financial firms use AlphaSense, including some Fortune 500 corporations. (builtin.com)
  • By using BrainBox AI, commercial buildings can reduce total energy costs by 25% and improves occupant comfort by 60%. (analyticsinsight.net)
  • While all of it is still what seems like a far way off, the future of this technology presents a Catch-22, able to solve the world's problems and likely to power all the A.I. systems on earth, but also incredibly dangerous in the wrong hands. (forbes.com)
  • More than 70 percent of users claim they book trips on their phones, review travel tips, and research local landmarks and restaurants. (builtin.com)
  • In 2019, AI adoption among large companies increased by 47% compared to 2018, according to the latest Artificial IntelligenceIndex report. (marsner.com)



External Links

hbr.org


medium.com


mckinsey.com


en.wikipedia.org




How To

How to make Alexa talk while charging

Alexa, Amazon's virtual assistant can answer questions and provide information. It can also play music, control smart home devices, and even control them. It can even hear you as you sleep, all without you having to pick up your smartphone!

You can ask Alexa anything. Just say "Alexa", followed by a question. She will give you clear, easy-to-understand responses in real time. Alexa will improve and learn over time. You can ask Alexa questions and receive new answers everytime.

You can also control other connected devices like lights, thermostats, locks, cameras, and more.

You can also tell Alexa to turn off the lights, adjust the temperature, check the game score, order a pizza, or even play your favorite song.

Alexa can talk and charge while you are charging

  • Step 1. Turn on Alexa Device.
  1. Open Alexa App. Tap Settings.
  2. Tap Advanced settings.
  3. Choose Speech Recognition
  4. Select Yes, always listen.
  5. Select Yes, only the wake word
  6. Select Yes to use a microphone.
  7. Select No, do not use a mic.
  8. Step 2. Set Up Your Voice Profile.
  • Enter a name for your voice account and write a description.
  • Step 3. Step 3.

Say "Alexa" followed by a command.

Example: "Alexa, good Morning!"

Alexa will answer your query if she understands it. Example: "Good morning John Smith!"

If Alexa doesn't understand your request, she won't respond.

  • Step 4. Step 4.

Make these changes and restart your device if necessary.

Notice: You may have to restart your device if you make changes in the speech recognition language.




 



MIT Robots Run Like a Cheetah