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首页> 外文期刊>International journal of electrical power and energy systems >Experimental analysis of saturated core fault current limiter performance at different fault inception angles with varying DC bias
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Experimental analysis of saturated core fault current limiter performance at different fault inception angles with varying DC bias

机译:不同DC偏置不同故障初始角度饱和核心故障电流限制器性能的实验分析

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摘要

Economic growth has exponentially increased the power demand resulting in bulk power systems. The distributed generations are also integrating into the grid network to retrieve the benefits of the locally available generating resources. Also, the high-reliability expectations of supply systems lead to the interconnection of power networks. All these modern characteristics escalated the magnitude of short circuit currents in the grids. The security from these currents, therefore, challenged the power network protection systems. The deployment of the scalable and reliable Fault Current Limiter (FCL) technology can enhance the service span of existing components in the power industry. The Saturated Core Fault Current Limiter (SCFCL) can be a commercially viable solution to this problem. This paper reports the test performance of a scaled-down, compact, novel, copper-coils-based SCFCL model. The steady-state and transient-state behavior have been characterized in terms of saturation levels and the fault inception angles. The importance of DC bias selection in the optimum current limiting performance of the device is demonstrated in the results. The results also exhibit that the fault inception at the peak of voltage causes the most asymmetric transient during the current limiting process. Also, the heuristic design methodology based on extensive experimental work has been proposed, taking into account an application of optimum DC bias.
机译:经济增长呈指数级提高了散装电力系统的电力需求。分布式代层还将其集成到网格网络中以检索本地可用的生成资源的好处。此外,供应系统的高可靠性预期导致电力网络的互连。所有这些现代特色都升级了网格中的短路电流的大小。因此,这些电流的安全性挑战了电网保护系统。可扩展可靠的故障电流限制器(FCL)技术的部署可以增强电力行业现有组件的服务跨度。饱和核心故障电流限制器(SCFCL)可以是该问题的商业上可行的解决方案。本文报告了基于缩小的,紧凑,新颖的,基于铜线线圈的SCFCL模型的测试性能。稳态和瞬态行为已经表征在饱和度水平和故障初始角度方面。结果证明了DC偏置在该装置的最佳电流限制性性能下的重要性。结果还表明,电压峰值的故障初始导致电流限制过程中最不对称的瞬态。此外,已经提出了基于广泛实验工作的启发式设计方法,考虑到最佳直流偏置的应用。

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