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Study on Inertia Support Capability and Its Impact in Large Scale Power Grid with Increasing Penetration of Renewable Energy Sources

机译:随着可再生能源渗透率的提高,惯性支撑能力及其对大型电网的影响

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As the penetration of RES (renewable energy sources) in large scale grid increases continuously, the inertia support capability and primary frequency regulation of synchronous power grid are both declining. A decrease in inertia is problematic because it negatively influences the dynamic characteristic of the system's frequency. But its concrete impact is still not clearly distinguished from that caused by the decline of primary frequency regulation. Aiming at the above problem, firstly, the inertia support capability and its physical meaning of synchronous generator are analyzed in depth, and the expression formula of inertia support power of synchronous generator is deduced. Secondly, the distinction between the inertia support capability and primary frequency regulation of synchronous generator is analyzed in detail. Thirdly, the respective impacts of the inertia support and of the primary regulation on the dynamic characteristic of system frequency during power shortage disturbances in large scale synchronous grid are simulated and analyzed. Finally, all the study above points to a conclusion that the large synchronous power grids with increasing penetration of RES require more relatively continuous power support of the primary frequency regulation than the short term inertia support, because the impact brought by the decrease of system inertia support is less serious than that brought by reduction of primary frequency regulation ability in large scale power grid.
机译:随着RES(可再生能源)在大型电网中的渗透率不断提高,同步电网的惯性支撑能力和一次频率调节率均在下降。惯性的减小是有问题的,因为它会对系统频率的动态特性产生负面影响。但是,它的具体影响与一次频率调节下降所造成的影响仍然没有明显区别。针对上述问题,首先深入分析了同步发电机的惯性支撑能力及其物理意义,推导了同步发电机的惯性支撑功率的表达式。其次,详细分析了同步发电机的惯性支持能力与一次频率调节之间的区别。第三,仿真分析了大型同步电网在电力短缺扰动中惯性支撑和一次调节对系统频率动态特性的影响。最后,以上所有研究得出的结论是,随着RES的渗透率增加的大型同步电网比短期惯性支持需要更多的相对连续的一次频率调节功率支持,这是因为系统惯性支持减少所带来的影响它不如大型电网中初级频率调节能力降低所带来的严重性。

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