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Fault calculations in AC-DC hybrid systems

机译:AC-DC混合系统中的故障计算

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摘要

Hybrid AC-DC systems are expected to flourish rapidly as part of the transition from conventional grid to smart grid. Effective detection, classification, and mitigation of faults in hybrid systems require accurate modelling of the entire system as a whole, and its components as well. Moreover, precise computation of fault current is an indispensable part of any fault management scheme. Such modelling frameworks have long been existing for either three-phase AC, or DC grids. However, existing algorithms turn to be inadequate in calculating the fault current characteristics in full AC-DC hybrid systems that include distributed generation sources and energy storage units. This paper reviews the complexities involved in determining fault current characteristics in such hybrid AC-DC where switch-mode power converters interface AC and DC and renewable resources are integrated in the DC subsystem.
机译:作为从传统电网向智能电网过渡的一部分,混合AC-DC系统有望迅速发展。要有效地检测,分类和缓解混合系统中的故障,就需要对整个系统及其组件进行准确的建模。而且,故障电流的精确计算是任何故障管理方案中必不可少的部分。这种建模框架早就存在于三相交流或直流电网中。然而,在包括分布式发电源和能量存储单元的完全AC-DC混合系统中,现有的算法不足以计算故障电流特性。本文回顾了在这种混合型AC-DC中确定故障电流特性所涉及的复杂性,在这些混合型AC-DC中,开关电源转换器将AC和DC接口,并且可再生资源集成在DC子系统中。

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