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Effects of downhill turning prevention control on joystick operation of a power wheelchair driving on a cross slope

机译:防止下坡转弯控制对横坡驾驶电动轮椅的操纵杆操作的影响

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Downhill turning prevention control (DTPC) can help users of power wheelchairs (PWC) to maintain a straight track on cross slopes. DTPC detects the gravity-induced and unintended change in the travelling direction of PWC and offsets it by modulating the motor power. Whereas some PWC suppliers have commercialized the DTPC system, little attention has been paid on its effects on the users. In this study, we attempted to obtain quantitative evidences that show the effects of DTPC on joystick operation of a PWC. Seven subjects with cervical spinal cord injury drove a test PWC with DTPC on a cross slope. During the test drive, joystick operation and behavior of the PWC were monitored and recorded. The comparison of several evaluation measures from the trial records with and without DTPC clearly elucidated changes in joystick operation. First, the amount of joystick displacement in the left-right (LR) direction significantly decreased with DTPC. This is a direct evidence that DTPC replaced the manual offset operation by the subjects to prevent downhill turning. Second, the amount of joystick displacement variation in the LR direction also decreased with DTPC. This evaluation measure is correlated with stability of joystick operation. Therefore the result here indicates that DTPC enabled the subjects to operate the joystick more stably by reducing the burden of the offset operation. Lastly, we found the other side effect of DTPC on joystick operation, i.e., the slight increase of the amount of joystick displacement variation in the forward-backward direction. This result implies that the DTPC-induced decrease of the offset operation made it easier for the subjects to adjust the speed of the PWC more frequently and precisely. These results shown here demonstrated various positive effects of DTPC on joystick operation.
机译:防止下坡转弯控制(DTPC)可以帮助电动轮椅使用者(PWC)在横坡上保持平直的轨道。 DTPC检测PWC行驶方向上的重力引起的意外变化,并通过调制电动机功率来抵消它。尽管一些PWC供应商已经将DTPC系统商业化,但是对其对用户的影响却鲜有关注。在这项研究中,我们试图获得定量证据,以显示DTPC对PWC操纵杆操作的影响。七名患有颈脊髓损伤的受试者在交叉坡道上驾驶了带有DTPC的PWC测试。在试驾期间,将监控并记录PWC的操纵杆操作和行为。对有无DTPC的试验记录中几种评估方法的比较清楚地阐明了操纵杆操作的变化。首先,DTPC使操纵杆在左右(LR)方向上的位移量大大减少。这直接证明了DTPC取代了对象的手动偏移操作,以防止下坡转弯。其次,DTPC可使LR方向上的操纵杆位移变化量减小。该评估措施与操纵杆操作的稳定性相关。因此,这里的结果表明,DTPC通过减轻补偿操作的负担使受试者能够更稳定地操作操纵杆。最后,我们发现了DTPC在操纵杆操作上的另一个副作用,即操纵杆在前后方向上的位移变化量略有增加。该结果表明,DTPC引起的偏移操作的减少使对象更容易更频繁,更精确地调整PWC的速度。此处显示的这些结果证明了DTPC对操纵杆操作的各种积极影响。

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