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Adaptive Performance Tuning for Voltage-Sourced Converters with Frequency Responses

机译:具有频率响应的电压 - 源转换器的自适应性能调谐

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Renewable generation brings both new energies and significant challenges to the evolving power system. To cope with the loss of inertia caused by inertialess power electronic interfaces (PEIs), the concept of the virtual synchronous generator (VSG) has been proposed. The PEIs under VSG control could mimic the external properties of the traditional synchronous generators. Therefore, the frequency stability of the entire system could be sustained against disturbances mainly caused by demand changes. Moreover, as the parameters in the emulation control processes are adjustable rather than fixed, the flexibility could be enhanced by proper tuning. This paper presents a parameter tuning method adaptive to the load deviations. First, the concept and implementation of the VSG algorithm performing an inertia response (IR) and primary frequency responses (PFR) are introduced. Then, the simplification of the transfer function of the dynamic system of the stand-alone VSG-PEI is completed according to the distributed poles and zeros. As a result, the performance indices during the IR and PFR stages are deduced by the inverse Laplace transformation. Then, the composite influences on the performances by different parameters (including the inertia constant, the speed droop, and the load deviations) are analyzed. Based on the composite influences and the time sequences, an adaptive parameter tuning method is presented. The feasibility of the proposed method is verified by simulation.
机译:可再生的一代为不断发展的电力系统带来了新的能量和重大挑战。为了应对由Inertialess电力电子接口引起的惯性损失(PEI),已经提出了虚拟同步发电机(VSG)的概念。 VSG控件下的PEI可以模拟传统同步发电机的外部属性。因此,整个系统的频率稳定性可能是由于需求变化而导致的扰动。此外,由于仿真控制过程中的参数是可调节而不是固定的,因此可以通过适当的调谐来提高灵活性。本文介绍了一个适应负载偏差的参数调整方法。首先,引入了执行惯性响应(IR)和初级频率响应(PFR)的VSG算法的概念和实现。然后,根据分布式的杆和零完成单独的VSG-PEI动态系统的传递函数的简化。结果,通过反向拉普拉斯变换推导出IR和PFR阶段的性能指标。然后,分析了对不同参数(包括惯性常数,速度下垂和负载偏差)的性能对性能的影响。基于复合影响和时间序列,提出了一种自适应参数调谐方法。通过模拟验证所提出的方法的可行性。

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