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Impacts of subsynchronous and supersynchronous frequency components on synchrophasor measurements

机译:次同步和超同步频率分量对同步相量测量的影响

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Phasor measurement units (PMU) are playing an increasingly important role in power system dynamic security monitoring and control. However, the wide-area deployments of the renewable energy sources and the high voltage direct current (HVDC) transmission bring a large number of inter-harmonics to the power grid, which may result in further power system security problems. The impacts of inter-harmonics on synchrophasor measurements are revealed. This paper derives the phasor expressions of the signal, which contains the fundamental component and the inter-harmonics. It is found that the inter-harmonics will lead to the subsynchronous oscillation of the phasor measurements. The frequency transmutation principle between the harmonic and the phasor oscillation is revealed. Then, the field PMU data recorded during a subsynchronous oscillation, which occurred in an area of China with a high concentration of wind farms and HVDC transmission lines, are studied. A geographical wiring diagram with the subsynchronous oscillation distribution depicts the severe consequences of the inter-harmonics. In addition, the correctness of the theoretical derivation and the possibility of the inter-harmonics monitoring are verified.
机译:相量测量单元(PMU)在电力系统动态安全监控中起着越来越重要的作用。但是,可再生能源的大范围部署和高压直流(HVDC)传输给电网带来了大量的谐波,这可能会导致进一步的电力系统安全问题。揭示了间谐波对同步相量测量的影响。本文推导了信号的相量表达式,它包含基本成分和间谐波。发现间谐波将导致相量测量值的次同步振荡。揭示了谐波与相量振荡之间的频率变换原理。然后,研究了在中国次风电场和高压直流输电线路集中的地区发生的次同步振荡过程中记录的现场PMU数据。具有次同步振荡分布的地理接线图描述了间谐波的严重后果。此外,还验证了理论推导的正确性和谐波间监视的可能性。

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