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Risk-based framework for assessment of operational constraints for power systems focusing on small-disturbance stability and sub-synchronous resonance

机译:基于风险的框架,用于评估专注于小扰动稳定性和副同步共振的动力系统的运营限制框架

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This paper presents a risk-based framework to establish operational constraints for modern power systems. The methodology is established and subsequently applied to two areas of power system analysis - small-disturbance stability and sub-synchronous resonance (SSR). In the first case, probability density functions (pdfs) for critical oscillatory electromechanical modes are established based on the stochastic variation of system uncertainties such as generation and loading. These pdfs provide probabilities of unstable or poorly damped oscillations that are evaluated using risk-based approaches. For SSR analysis, frequency scans are completed to identify generators which are at risk of experiencing high mechanical torques. In both cases, evaluation using severity functions is used to ensure that acceptable levels of risk are not exceeded. The proposed methods are demonstrated using a meshed power system with capacitor series compensated AC tie lines.
机译:本文介绍了基于风险的框架,以建立现代电力系统的操作系统。建立方法,随后应用于两个电力系统分析领域 - 小扰动稳定性和子同步谐振(SSR)。在第一种情况下,基于系统不确定性的随机变化,例如生成和装载等系统不确定性的随机变化来建立概率密度函数(PDF)。这些PDF提供了使用基于风险的方法评估的不稳定或阻尼振荡不良的概率。对于SSR分析,频率扫描完成以识别有可能经历高机械扭矩的发电机。在这两种情况下,使用使用严重性函数的评估来确保不超过可接受的风险水平。使用具有电容器串联补偿交流系线的网状电力系统来证明所提出的方法。

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