Wheelchair batteries: driving cycles and testing.

Journal of rehabilitation R&D Pub Date : 1983-07-01
J J Kauzlarich, V Ulrich, M Bresler, T Bruning
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Abstract

The battery performance of electric wheelchairs was measured under indoor and outdoor conditions, and simulated driving cycles for these two environments were derived from these tests. Driving cycles were used to bench-test deep discharge wet cell and gel cell lead-acid batteries, nickel-cadmium batteries, and experimental nickel-zinc batteries. Results of this study support the conclusion that deep discharge wet cell lead-acid batteries satisfy wheelchair requirements and are the most economical choice. The effect of simulated wheelchair controller pulse width modulation on battery discharge compared to d.c. discharge was found to be negligible. A simple model analogous to Miner's Rule (3) plus results plotted on a Ragone chart of average power versus discharge time were found to correlate the effect of the highly variable actual power requirements of an electric wheelchair. Miner's Rule can predict battery performance for a given driving cycle.

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轮椅电池:驾驶循环和测试。
测试了电动轮椅在室内和室外两种环境下的电池性能,并推导了两种环境下的模拟行驶工况。采用驱动循环对湿电池、凝胶电池、镍镉电池和实验镍锌电池进行了台架试验。本研究结果支持深放电湿电池铅酸蓄电池满足轮椅使用要求,是最经济的选择。与直流放电相比,模拟轮椅控制器脉宽调制对电池放电的影响可以忽略不计。一个类似于Miner’s Rule(3)的简单模型加上平均功率与放电时间的Ragone图表上绘制的结果,发现了电动轮椅高度可变的实际功率需求的影响之间的相关性。Miner’s Rule可以预测给定驾驶周期的电池性能。
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Locomotion via paralyzed leg muscles: feasibility study for a leg-propelled vehicle. A system for evaluation and exercise-conditioning of paralyzed leg muscles. Gait restoration in paraplegic patients: a feasibility demonstration using multichannel surface electrode FES. Wheelchair batteries: driving cycles and testing. Evaluation of a curb-climbing aid for manual wheelchairs: considerations of stability, effort, and safety.
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