Main electrical scheme’s reliability evaluation for ChuXiong ±800kV rectifier station based on advanced four state component model

Shu Hong-chun, Hu Ze-jiang, Zhang Jing-fang, Hu Cui
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引用次数: 0

Abstract

The classical four-state component model haven't accord to practical situation because the equipment repairing technique based on condition of component developed quickly, and this paper put forwarded an advanced four state component model. That model redefined abnormal state and maintainable state, combined repair state based on condition of component and schedule repair state to repair state and then confirmed the conversion relationship and the parameter to each state. This paper put forwarded combining components and dividing subzone method to simplify the main electrical scheme to be a simple directional network, applied advanced four state component model in that network to calculate the subzone's reliability parameter. Applied the least path searching method to search the least path matrix for the network and predigested the method by matrix multiplication, enumerated each fault state of that network by analytical method, worked out the reliability index of that network by VC++. And the reliability index of network is the reliability index of main electrical scheme in ChuXiong plusmn800 kV rectifier station. At last this paper analyzed the result of main electrical scheme's reliability and it proved the method's validity which used in this paper.
基于先进四态分量模型的楚雄±800kV整流站主电气方案可靠性评价
随着基于部件状态的设备维修技术的迅速发展,经典的四态部件模型已经不符合实际情况,本文提出了一种先进的四态部件模型。该模型重新定义了异常状态和可维护状态,将基于部件状态的修复状态和计划修复状态组合为修复状态,确定了各状态的转换关系和参数。提出了组合组件和划分分区的方法,将主电气方案简化为一个简单的定向网络,并在该网络中应用先进的四状态组件模型计算分区的可靠性参数。应用最小路径搜索法搜索网络的最小路径矩阵,通过矩阵乘法对方法进行简化,用解析法列举网络的各种故障状态,用vc++计算出网络的可靠性指标。其中网络可靠性指标为楚雄加800kv整流站主电气方案可靠性指标。最后对主电气方案的可靠性结果进行了分析,验证了本文所采用方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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