在变流器主导的电力系统中,短路率作为系统强度指标的评价

O. Damanik, Ö. C. Sakinci, Goran Grdenić, J. Beerten
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引用次数: 1

摘要

本文研究了短路比(SCR)作为高穿通电压源变换器(VSCs)电力系统强度指标的适用性。在以同步发电机为主的电力系统中,可控硅已被广泛应用于利用在相关母线上获得的短路电平信息来估计系统强度。然而,新兴的变换器技术,如VSCs,具有与同步发电机不同的短路特性,在某种意义上,短路电流通常更小,更可控。此外,SCR的计算是基于电力系统的静态分析,忽略了vsc的动态和控制方面。这些方面提出了一个问题,即可控硅是否仍然可以用来评估变换器控制系统的系统强度。为此,本文回顾了可控硅的基本定义,并列举了影响其在变流器主导的电力系统中适用性的因素。通过实例分析说明了变流器控制系统中可控硅的局限性,并讨论了控制策略对系统动态性能的影响。
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Evaluation of the use of short-circuit ratio as a system strength indicator in converter-dominated power systems
This paper investigates the applicability of short-circuit ratio (SCR) as a system strength indicator in power systems with a high penetration of voltage source converters (VSCs). In power systems dominated by synchronous generators, the SCR has been widely used to estimate the system strength by using short-circuit level information obtained at the relevant bus. However, the emerging converter technology such as VSCs has different short-circuit characteristics from synchronous generators, in the sense that the short-circuit currents are typically lower in magnitude and more controllable. Moreover, SCR calculations are based on the static analysis of the power system, neglecting the dynamic and control aspects of VSCs. These aspects raise the question whether the SCR can still be used to evaluate system strength of converter-dominated systems. To this end, in this paper, the fundamental definition of the SCR is revisited, and factors influencing its applicability in converter-dominated power systems are listed. A case study is provided to demonstrate the limitation of the SCR in converter-dominated systems, and the impact of the control strategy on the dynamic performance of the system is also discussed.
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