A Hierarchic Control Strategy for Reliability Enhancement of PFCs in Co-phase TPSS

Meng Wang, Minwu Chen, Wenjie Lu, Zhechao Kou, Haochun Fu, Xin Gong
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Abstract

As the core component of co-phase traction power supply system (TPSS), the reliability evaluation and reliability optimization of power flow controllers (PFCs) are crucial to its safe operation. In this paper, the failure rate calculation model is adopted to evaluate the reliability of the PFCs. To enhance the reliability of PFCs, a novel hierarchic control of PFCs under the third compensation strategy is proposed in this paper. In the high-load area, all of the PFCs are operated simultaneously by the average-current sharing control while in the light-load area part of the PFCs unit is operated by turns to decrease the total power loss of converters. Taking the co-phase PFCs of the Shayu traction substation as an example, the effectiveness of proposed strategy is demonstrated. Results are shown that the failure rate of IGBT modules is reduced by 42.16% and the power loss is decreased by 11.75%.
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一种提高共相TPSS中pfc可靠性的分层控制策略
潮流控制器作为共相牵引供电系统的核心部件,其可靠性评估与可靠性优化对其安全运行至关重要。本文采用故障率计算模型对pfc的可靠性进行评估。为了提高pfc的可靠性,提出了一种基于第三补偿策略的pfc分层控制方法。在高负荷区,所有pfc采用平均共流控制同时运行;在轻负荷区,部分pfc单元采用轮流运行,以降低变流器的总功率损耗。以沙峪牵引变电站共相PFCs为例,验证了该策略的有效性。结果表明,IGBT模块故障率降低了42.16%,功率损耗降低了11.75%。
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