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首页> 外文期刊>Nature reviews Cancer >Adaptive Sliding Mode Control with Enhanced Optimal Reaching Law for Boost Converter Based Hybrid Power Sources in Electric Vehicles
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Adaptive Sliding Mode Control with Enhanced Optimal Reaching Law for Boost Converter Based Hybrid Power Sources in Electric Vehicles

机译:基于电动车辆升压转换器的增强优化达法的自适应滑模控制

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摘要

This paper proposes an adaptive sliding mode control (ASMC) strategy with an enhanced optimal reaching law (EORL) for the robust current tracking control of the boost converter based hybrid power source (HPS) in an electric vehicle (EV). A conventional ASMC strategy based on state observers and the hysteresis control method is used to realize the current tracking control for the boost converter based HPS. Then a novel enhanced exponential reaching law is proposed to improve the ASMC. Moreover, an enhanced exponential reaching law is optimized by particle swarm optimization. Finally, the adaptive control factor is redesigned based on the EORL. Simulations and experiments are established to validate the ASMC strategy with the EORL. Results show that the ASMC strategy with the EORL has an excellent current tracking control effect for the boost converter based HPS. When compared with the conventional ASMC strategy, the convergence time of the ASMC strategy with the EORL can be effectively improved. In EV applications, the ASMC strategy with the EORL can achieve robust current tracking control of the boost converter based HPS. It can guarantee the active and stable power distribution for boost converter based HPS.
机译:本文提出了一种自适应滑模控制(ASMC)策略,具有增强的最佳达到法(EORL),用于电动车辆(EV)中的升压转换器的混合动力源(HPS)的稳压电流跟踪控制。基于状态观察者和滞后控制方法的传统ASMC策略用于实现基于升压转换器的HPS的电流跟踪控制。然后提出了一种新颖的增强的指数达成法来改善ASMC。此外,通过粒子群优化优化了增强的指数达成法。最后,基于EORL重新设计自适应控制因子。建立模拟和实验,以验证具有EORL的ASMC策略。结果表明,具有EORL的ASMC策略对基于升压转换器的HPS具有出色的电流跟踪控制效果。与传统的ASMC策略相比,可以有效地改善了随着EORL的ASMC策略的收敛时间。在EV应用中,具有EORL的ASMC策略可以实现基于升压转换器的HPS的强大电流跟踪控制。它可以保证基于升压转换器的HPS的主动和稳定的功率分布。

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