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首页> 外文期刊>Industry Applications, IEEE Transactions on >Optimum Resistive Type Fault Current Limiter: An Efficient Solution to Achieve Maximum Fault Ride-Through Capability of Fixed-Speed Wind Turbines During Symmetrical and Asymmetrical Grid Faults
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Optimum Resistive Type Fault Current Limiter: An Efficient Solution to Achieve Maximum Fault Ride-Through Capability of Fixed-Speed Wind Turbines During Symmetrical and Asymmetrical Grid Faults

机译:最佳电阻型故障电流限制器:在对称和非对称电网故障期间实现定速风力发电机组最大故障穿越能力的有效解决方案

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摘要

This paper proposes an optimum resistive type fault current limiter (OR-FCL) as an efficient solution to achieve maximum fault ride-through (FRT) capability of fixed-speed wind turbines (FSWT) during various grid faults. In this paper, a dedicated control circuit is designed for the OR-FCL that enables it to insert an optimum value of resistance in the FSWT's fault current's path for improving transient behavior of the FSWT. The optimum resistance value depends on fault location and prefault active power. The control circuit of the proposed OR-FCL is capable of calculating the optimum resistance value for all the prefault conditions. By using the proposed control circuit, the FSWT can achieve its maximum FRT capability during symmetrical and asymmetrical faults, even at zero grid voltage. Analysis is provided in detail to highlight the process of calculating the optimum resistance of the OR-FCL. Moreover, the effect of the resistance value of the OR-FCL on the FRT behavior of FSWT is investigated. To show the efficiency of the proposed OR-FCL, its performance during various operation conditions of the FSWT is studied. It can be proved that each operation condition needs its own optimum resistance value, which can be obtained by using the proposed control circuit during the fault to achieve the maximum FRT capability of the FSWT. Comprehensive sets of simulations are carried out in PSCAD/EMTDC software and the results prove the effectiveness of the proposed approach.
机译:本文提出了一种最佳的电阻型故障电流限制器(OR-FCL),作为在各种电网故障期间实现固定速度风力发电机(FSWT)的最大故障穿越(FRT)能力的有效解决方案。在本文中,为OR-FCL设计了专用的控制电路,使其能够在FSWT的故障电流路径中插入最佳电阻值,以改善FSWT的瞬态行为。最佳电阻值取决于故障位置和故障前有功功率。所提出的OR-FCL的控制电路能够计算出所有预故障条件下的最佳电阻值。通过使用提出的控制电路,即使在电网电压为零时,FSWT在对称故障和非对称故障期间也可以实现其最大的FRT能力。详细分析以突出显示OR-FCL最佳电阻的计算过程。此外,研究了OR-FCL的电阻值对FSWT FRT行为的影响。为了显示所提出的OR-FCL的效率,研究了其在FSWT的各种操作条件下的性能。可以证明,每种工作条件都需要自己的最佳电阻值,可以通过在故障期间使用所提出的控制电路来获得最佳电阻值,以实现FSWT的最大FRT能力。在PSCAD / EMTDC软件中进行了全面的仿真,结果证明了该方法的有效性。

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