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Critical Speed Control of a Solar Car

机译:太阳能汽车的临界速度控制

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The World Solar Challenge is a 3000 km race for solar powered cars across the Australian continent from Darwin to Adelaide. Each car is powered by a panel of photovoltaic cells which convert sunlight into electrical power. The power can be used directly to drive the car or stored in a battery for later use. Previous papers (P. Howlett, P. Pudney, T. Tarnopolskaya, and D. Gates, IMA Journal of Mathematics Applied in Business and Industry vol. 8, pp. 59-81, 1997; P.G. Howlett and PJ. Pudney, Dynamics of Continuous, Discrete, and Impulsive Systems vol. 4, pp. 553-567, 1998) using a simplified model of the battery, have shown that the optimal strategy is essentially a speedholding strategy. In this paper, with a more realistic model of the battery, we show that the optimal driving strategy is a critical speed strategy. For an optimal journey with no beginning and no ending the solar car must always travel at the critical speed. For an optimal journey of finite length the speed must be close to the critical speed for most of the journey. The critical speed depends on the solar power and will normally vary slowly with time.
机译:世界太阳能挑战赛是一场从达尔文到阿德莱德的横跨澳大利亚大陆的太阳能汽车竞赛,全长3000公里。每辆汽车由一组光伏电池供电,这些光伏电池将阳光转化为电能。该电源可以直接用于驱动汽车,也可以存储在电池中以备后用。以前的论文(P. Howlett,P。Pudney,T。Tarnopolskaya和D. Gates,《 IMA工商与数学应用数学杂志》第8卷,第59-81页,1997年; PG Howlett和PJ.Pudney,《动力学》使用电池的简化模型的连续,离散和脉冲系统,第4卷,第553-567页,1998年)已经表明,最佳策略本质上是一种速度保持策略。在本文中,使用更逼真的电池模型,我们证明了最佳驾驶策略是关键的速度策略。为了实现无始无终的最佳旅程,太阳能汽车必须始终以临界速度行驶。对于有限长度的最佳行程,速度必须接近大多数行程的临界速度。临界速度取决于太阳能,通常会随时间缓慢变化。

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