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首页> 外文期刊>Journal of power electronics >Sliding Mode Control for Current Distribution Control in Paralleled Positive Output Elementary Super Lift Luo Converters
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Sliding Mode Control for Current Distribution Control in Paralleled Positive Output Elementary Super Lift Luo Converters

机译:并联正输出基本型Super Lift Luo变换器中电流分布控制的滑模控制

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This paper presents a Current Distribution Control design for Paralleled Positive Output Elementary Super Lift Luo Converters (PPOESLLCs) operated in Continuous Conduction Mode using a Sliding Mode Controller (SMC). Manipulating the higher current requirement of the load through the paralleling of POESLLCs, results in a current inequality. This is mainly due to dissimilarities in the power semiconductor switches and circuit components used in POESLLCs, which may lead to converter failures. In order to balance the proper load current sharing and the load voltage regulation of PPOESLLCs, a SMC is developed. The SMC is designed for the inherently variable-structured of POESLLCs by using the state-space average based model. The static and dynamic performance of the developed controller with PPOESLLCs is validated for its robustness to perform over a wide range of operating conditions through both a laboratory prototype and MatLab/Simulink models, which are compared with a Proportional-Integral (PI) controller. Theoretical analysis, simulation and experimental results are presented to demonstrate the feasibility of the developed SMC along with the complete design procedure.
机译:本文提出了一种采用滑模控制器(SMC)在连续导电模式下运行的并联正输出基本超升力Luo转换器(PPOESLLC)的电流分布控制设计。通过并联POESLLC来操纵负载的更高电流要求,会导致电流不平等。这主要是由于POESLLC中使用的功率半导体开关和电路组件的差异,这可能导致转换器故障。为了平衡PPOESLLC的适当负载电流共享和负载电压调节,开发了SMC。 SMC通过使用基于状态空间平均值的模型设计用于POESLLC的固有可变结构。通过实验室原型和MatLab / Simulink模型,与比例积分(PI)控制器进行了比较,已开发的具有PPOESLLC的控制器的静态和动态性能的鲁棒性得到了验证,可以在各种操作条件下执行。进行了理论分析,仿真和实验结果,以证明所开发SMC的可行性以及完整的设计程序。

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