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Battery super-capacitor hybrid system for electrical vehicle transportation's systems – an energy integrated approach

机译:电动汽车运输系统电池超级电容混合系统 - 能量综合方法

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摘要

Hybrid energy storage system (HESS) generally comprises of two different energy sources combined with power electronic converters. This article uses a battery super-capacitor based HESS with an adaptive tracking control strategy. The proposed control strategy is to preserve battery life, while operating at transient conditions of the load. The proposed control strategy comprises of a gain adaptation algorithm, combined with a dead-zone induced feedback. The closed loop system under the influence of this feedback scheme, is proved to be is robust against variation in operating conditions, parameter uncertainties and measurement noise. Unlike the earlier adaptive controllers for HESS, this strategy does not involve any parameter adaptation routine. Hence, this controller is computationally less intensive and better suited for practical applications involving uncertain environmental conditions. The efficacy of the proposed strategy is verified through numerical simulations and experimental scenarios.
机译:混合能储能系统(HESS)通常包括两个不同的能源与电力电子转换器组合。本文采用电池超级电容基于自适应的HESS<内联公式/> 跟踪控制策略。该拟议的控制策略是保留电池寿命,同时在负载的瞬态条件下运行。所提出的控制策略包括增益适应算法,结合死区诱导的反馈。被证明,在该反馈方案的影响下,闭环系统被证明是稳健的防止操作条件,参数不确定性和测量噪声的变化。与早期的自适应控制器出于HESS,这种策略不涉及任何参数适应例程。因此,该控制器的计算方式更密集,更适合涉及不确定环境条件的实际应用。通过数值模拟和实验场景验证了所提出的策略的功效。

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