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Harmonic Impact on Power System Security and Stability Control Device and the Improvement Method

机译:谐波对电力系统安全稳定控制装置的影响及改进方法

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With the large-scale application of new power electronic devices in power grid, the risk of harmonic resonance is higher and higher. However, the design of trip criterion of security and stability control (SSC) device in the past seldom considers the new harmonic condition. Combined with the actual harmonic resonance happened in CSG, this paper carries out the study of harmonic impact on SSC device. According to defects found in studies that SSC device can't effectively filter out specific frequency of high order harmonic, sampling algorithm of the device is analyzed theoretically, and harmonic impact of no-fault line trip criterion is also analyzed under existing conditions. Combined with the actual SSC devices in CSG, a temporary measure to deal with the risk of refusing action of SSC device is put forward. Also an ultimate improvement method of SSC software and hardware is proposed and tested on the SSC test platform. Test results verify the effectiveness of the proposed method, and meanwhile the method has important significance to the design and improvement of other SSC devices.
机译:随着新的电力电子设备在电网中的大规模应用,谐波谐振的风险越来越高。但是,过去安全与稳定控制(SSC)装置的跳闸准则设计很少考虑新的谐波条件。结合CSG中实际发生的谐波谐振,对SSC装置的谐波影响进行了研究。针对研究中发现的SSC装置不能有效滤除高次谐波特定频率的缺陷,从理论上分析了该装置的采样算法,并分析了现有条件下无故障跳闸准则的谐波影响。结合CSG中实际的SSC设备,提出了解决SSC设备拒绝动作风险的临时措施。还提出了SSC软件和硬件的最终改进方法,并在SSC测试平台上进行了测试。测试结果验证了该方法的有效性,同时对其他SSC设备的设计和改进具有重要意义。

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