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Effects of Load Connection Form on Efficiency and Kinetics of Biped Walking

机译:负载连接形式对散步效率和动力学的影响

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This paper investigates the influence of the load connection form on the walking energetics and kinetics with simple models. Four load connection forms including rigid connection (RIC), springy connection (SPC), swingy connection (SWC), and springy and swingy connection (SSC) were modeled. The step-to-step transition of periodic walking was studied through an analytical method. The toe-off impulse magnitude and the work done by toe-off were derived. Simulations were performed to study the walking performance of each model and the effect of model parameters on the gait properties. The analysis and simulation results showed that compared with RIC, SPC and SSC can significantly improve the toe-off efficiency and change the ground reaction force (GRF) profile by reducing the burden during the step-to-step transition, which may lead to reduction of walking energy cost. Energetics and kinetics of SWC are closely related to the swing angle of load at the transition moment. The load swing may decrease the walking speed, and it is not beneficial to walking efficiency.
机译:本文用简单模型研究了载荷连接形式对步行能量学和动力学的影响。建立了刚性连接(RIC)、弹性连接(SPC)、摆动连接(SWC)和弹性和摆动连接(SSC)四种荷载连接形式的模型。用解析方法研究了周期性行走的阶跃过渡。推导了脱趾冲量的大小和脱趾所做的功。通过仿真研究了每个模型的行走性能以及模型参数对步态特性的影响。分析和仿真结果表明,与RIC相比,SPC和SSC可以显著提高前束效率,并通过减少阶跃过渡过程中的负荷来改变地面反力(GRF)分布,从而降低行走能量消耗。SWC的能量学和动力学与载荷在过渡时刻的摆角密切相关。负荷摆动会降低行走速度,不利于提高行走效率。

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