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Estimation of Joint Torque and Power Consumption During Sit-to-Stand Motion of Human-being Using a Genetic Algorithm

机译:基于遗传算法的人体坐姿运动中关节转矩和功率消耗的估计

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摘要

A model of human lower limb along with body has been drawn having a presumed body height and body mass index. Different ranges of joint angles of human legs and body have been taken to simulate the sit-to-stand motion. The kinematic analysis is done by varying joint angles over time. The dynamic studies have been carried out for different joints. Torque and power consumption have been calculated. Using a genetic algorithm, optimal solutions for joint torque and power consumption have been obtained. The dynamic balance of human body system during sit-to-stand motion has also been maintained while carrying out the optimization. Another attempt has been made in order to get optimum torque and power consumption in minimum time by treating it as a multi-objective optimization problem. Thus, a Pareto-optimal front of solutions has been obtained.
机译:已经绘制了具有人体下肢和人体模型的推定人体高度和体重指数的模型。已经采取了人类腿部和身体的关节角度的不同范围来模拟从坐到站的运动。运动分析是通过随时间变化关节角度来完成的。已经对不同的关节进行了动力学研究。已计算出扭矩和功耗。使用遗传算法,已经获得了联合扭矩和功率消耗的最佳解决方案。进行优化时,人体系统从坐到站的运动过程中也保持了动态平衡。通过将其视为多目标优化问题,已进行了另一种尝试,以便在最短的时间内获得最佳的扭矩和功率消耗。因此,已经获得了帕累托最优解。

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