Professor Jonathan Hurst, right, tinkers with MABEL, a humanoid robot that has a natural human gait. MABEL can walk, run, and climb stairs using a natural spring in its joints. (Source: Oregon State University)
Great point about the effect of the research on the design of prosthetic limbs. Wearers of prostheses often have to deal with a very unnatural gait that's caused by their prosthetic legs. Many take a step and then swing the prostheses, which is said to be terribly uncomfortable for them. If an engineer could design a limb that provides a natural gait, that would be huge step forward.
I agree with both you and Charles about robotics research not under Military eyes. Occassionally its nice to see robotics being used in a non destructive capacity. Also, here's a link on Oregon State University Robotics Lab. Keep the robotics articles coming. I really enjoy them.
Hi Ann, Your quite welcome about the link. I find the subject of robotics to be fascinating and it has no application boundaries. The articles you write definitely illustrates that! Keep them coming!!!
Very nice and interesting article. I always enjoy reading the robot stories. This one is really interesting kind of makes me think irobot. Before me know it will be hard to tell a robot from a real human. I'm planning on working on my PhD and my thesis idea is based on one of the mimicking robots.
Some humanoid walking robots are also good at running, balancing, and coordinated movements in group settings. Several of our sports robots have won regional or worldwide acclaim in the RoboCup soccer World Cup, or FIRST Robotics competitions. Others include the world's first hockey-playing robot and a trash-talking Scrabble player.
A recent example of a major CAE revamp is MSC Apex, released last month by MSC Software Corp. In a discussion with Design News, MSC executives noted that its next-generation platform is designed to substantially reduce CAE modeling and process time, “in some cases from weeks down to hours.”
The Thames Deckway would run for eight miles close to the river’s edge, rising and falling slightly with the tidal cycle. It will generate its own energy from a series of devices that will line the pathway and use a combination of sources to make the path self-sustaining.
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