不同交流系统强度下vdc - hvdc系统的动态特性

S. Arunprasanth, R. Kuffel, U. Annakkage, C. Karawita
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引用次数: 2

摘要

在弱交流系统中运行VSC会带来一些挑战,如确保扰动后的稳定性和控制器参数的正确选择,这些都需要在物理实现之前解决。研究了控制器参数对模块化多电平变换器(MMC) VSC系统稳定性的影响。与锁相环(PLL)增益相比,d-q控制器增益对稳定性的影响更大。在实时数字模拟器(RTDS)上的时域仿真结果表明,一组适当调整的控制器增益可以保证MMC-VSC系统的小、大暂态稳定性。此外,通过进行小信号稳定性评估,分析了瞬时电流和电压测量延迟的负面影响。最后给出了连接弱交流网络的MMC-VSC系统控制器参数选择的实用指南。
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Dynamic Behaviour of VSC-HVDC Systems Under Different AC System Strengths
Operation of VSC with weak AC systems creates challenges such as ensuring stability after disturbances and proper selection of controller parameters, need to be addressed before physical implementations. This paper investigates the effect of controller parameters on the stability of a modular multilevel converter (MMC) VSC system. It was observed that d-q controller gains have greater influence on the stability compared to phase-locked loops (PLL) gains. It is demonstrated using time-domain simulation results obtained on the real-time digital simulator (RTDS) that a set of properly tuned controller gains could ensure small and large transient stabilities of the MMC-VSC system. Moreover, the negative effect of measurement delays in instantaneous currents and voltages is analyzed by performing small-signal stability assessment. The paper concludes with useful guidelines on selecting controller parameters for an MMC-VSC system connected to weak AC networks.
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