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Design of model-based controllers applied to a solid-state low voltage dc breaker

机译:应用于固态低压直流断路器的基于模型的控制器的设计

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This paper presents the methodology of design of model-based sliding mode control (SMC) algorithms applied to power electronic dc-dc converters, which are part of the components of a solid-state low voltage dc breaker (SLVDB). The power converters used in the tested schemes of the SLVDB are the boost and sepic dc-dc converters. Accurate disconnection times, user-configured, are achieved with the proposed controllers, as well as a complete minimization of the transient recovery voltage (TRV) in the breaker terminals. Details of the performance of two SLVDB configurations are analyzed and compared in order to establish the best design comprising complexity vs. performance. MATLAB simulations support the results and provide a reasonable picture of the operation of the SLVDB.
机译:本文介绍了应用于电力电子dc-dc转换器的基于模型的滑模控制(SMC)算法的设计方法,该算法是固态低压dc断路器(SLVDB)组件的一部分。在SLVDB的测试方案中使用的电源转换器是升压和Sepic DC-DC转换器。使用建议的控制器可以实现用户配置的准确断开时间,并且可以将断路器端子中的瞬态恢复电压(TRV)完全降至最低。分析并比较了两种SLVDB配置的性能细节,以建立包括复杂性与性能的最佳设计。 MATLAB仿真支持结果,并为SLVDB的运行提供了合理的图像。

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