Baimyshev Almaskhan, Finn-Henry Michael, Goldfarb Michael
School of Engineering, Vanderbilt University, Nashville, TN, USA.
Wearable Technol. 2023 Sep 6;4:e23. doi: 10.1017/wtc.2023.18. eCollection 2023.
This article examines the feasibility of employing a cold-gas thruster (CGT), intended as a backpack-wearable device, for purposes of arresting backward falls, and in particular describes a supervisory controller that, for some motion described by an arbitrary combination of center-of-mass angle and angular velocity, both detects an impending fall and determines when to initiate thrust in the CGT in order to arrest the impending fall. The CGT prototype and the supervisory controller are described and experimentally assessed using a rocking block apparatus intended to approximate a backward-falling human. In these experiments, the CGT and supervisory controller restored upright stability to the rocking block in all experiment cases that would have otherwise resulted in a fall without the CGT assistance. Since the controller and experiments employ a reduced-order model of a falling human, the authors also conducted a series of simulations intended to examine the extent to which the controller might remain effective in the case of a multi-segment human. The results of these simulations suggest that the CGT controller would be nearly as effective on a multi-segment falling human as on the reduced-order model.
本文探讨了将一种用作可穿戴在背包上的装置的冷气推进器(CGT)用于防止向后跌倒的可行性,尤其描述了一种监督控制器,对于由质心角度和角速度的任意组合所描述的某些运动,该控制器既能检测到即将发生的跌倒,又能确定何时启动CGT中的推力以阻止即将发生的跌倒。使用旨在模拟向后跌倒的人体的摇块装置对CGT原型和监督控制器进行了描述和实验评估。在这些实验中,在所有原本会导致跌倒而没有CGT辅助的实验情况下,CGT和监督控制器都使摇块恢复了直立稳定性。由于控制器和实验采用了跌倒人体的降阶模型,作者还进行了一系列模拟,旨在研究在多节段人体的情况下控制器可能保持有效作用的程度。这些模拟结果表明,CGT控制器对多节段跌倒人体的效果几乎与对降阶模型的效果相同。