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首页> 外文期刊>IEEE Transactions on Power Electronics >Analysis of the Effects of Operation Voltage Range in Flexible DC Control on Railway HPQC Compensation Capability in High-Speed Co-phase Railway Power
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Analysis of the Effects of Operation Voltage Range in Flexible DC Control on Railway HPQC Compensation Capability in High-Speed Co-phase Railway Power

机译:柔性直流控制中的工作电压范围对高速同相铁路电力中HPQC补偿能力的影响分析

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摘要

Railway hybrid power quality conditioner (HPQC) is advantageous over conventional railway power quality conditioner (RPC) for its reduction in operation voltage and device ratings in co-phase traction power compensation. In order to further reduce the power loss during operation, flexible dc control has been proposed. However, the operation voltage range for railway HPQC has not yet been discussed. This is important since in contrast to traditional power quality compensation devices, active power compensation is involved in co-phase traction power. Compensation capability in co-phase traction power thus does refer not only to reactive power compensation but also to active power compensation ability. Satisfactory compensation performance can be provided only when railway HPQC can provide enough active and reactive compensation power output at the same time. In this paper, the effects of operation range in flexible dc voltage control on railway HPQC compensation capability is briefly discussed and analyzed. The analysis is verified via PSCAD simulations. A laboratory-scaled hardware prototype is also constructed to obtain experimental results for further verifications.
机译:铁路混合动力质量调节器(HPQC)优于常规铁路电能质量调节器(RPC),因为它降低了工作电压和同相牵引功率补偿中的设备额定值。为了进一步减少操作期间的功率损耗,已经提出了灵活的直流控制。但是,铁路HPQC的工作电压范围尚未讨论。这很重要,因为与传统的电能质量补偿设备相比,同相牵引功率涉及有功功率补偿。因此,同相牵引功率的补偿能力不仅涉及无功功率补偿,而且涉及有功功率补偿能力。只有当铁路HPQC可以同时提供足够的有功和无功补偿功率输出时,才能提供令人满意的补偿性能。本文简要讨论和分析了柔性直流电压控制中的工作范围对铁路HPQC补偿能力的影响。该分析通过PSCAD仿真进行了验证。还构建了实验室规模的硬件原型,以获取实验结果以供进一步验证。

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