Abstract
A real-time collision-avoidance algorithm for human-symbiotic robot that is required to avoid multiple pedestrians was developed. An algorithm to predict the likelihood of a collision with obstacles was based on the relative velocities between a moving robot and multiple obstacles. An algorithm that can generate the optimum path sequence to a goal in real time was also developed. The collision-avoidance path is generated by repeating an operation to select two tangent paths that connect a via-point on a path to a collision circle of each obstacle that exists in the relative space. A robot-called "EMIEW"-using these algorithms with a system for avoiding collisions with many obstacles moves at a speed of 0.8 mIs in a cluster of five people walking at 1.2 m/s - speed. The repeat period for generating a new avoidance path is 0.5s, and the processing time for the developed algorithm in the each period is less than 4 ms. © 2011 The Japan Society of Mechanical Engineers.
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CITATION STYLE
Hosoda, Y., Yamamoto, K., Ichinose, R., Egawa, S., Tamamoto, J., & Tsubouchi, T. (2011). Collision avoidance control of human-symbiotic robot. Nihon Kikai Gakkai Ronbunshu, C Hen/Transactions of the Japan Society of Mechanical Engineers, Part C, 77(775), 1051–1061. https://doi.org/10.1299/kikaic.77.1051
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