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A Dual-Adaptivity Inertia Control Strategy for Virtual Synchronous Generator

机译:虚拟同步发电机的双自适应惯性控制策略

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The virtual synchronous generator (VSG) improves the robustness of the inverter-interfaced distributed generator (IIDG) against instability by introducing a virtual inertia. However, the transient response of the active power and the angular frequency conflict with each other for the IIDG with fixed inertia control. It is necessary to adopt adaptive control to improve overall performances of power and frequency as the operating condition changes. This paper analyzes the impact of the inertia on power and angular frequency. A dual-adaptivity inertia control strategy is proposed to offer a responsive and stable frequency support and also achieve the balance between power regulation and frequency regulation according to different operating conditions. The principle of parameter design is given to obtain the range of adaptivity. Quantitative assessment considering the cumulative effect of the output deviation and its duration is also presented to evaluate the proposed strategy intuitively. The strategy is further verified based on PSCAD/EMTDC and a hardware-in-loop experiment platform based on RTDS. Results confirm that the proposed strategy not only achieves rapid frequency response with slight dynamic deviations under disturbances but also strikes a balance between the frequency and power and leads to improved overall control.
机译:虚拟同步发电机(VSG)通过引入虚拟惯性来提高逆变器接口分布式发电机(IIDG)抵抗不稳定性​​的鲁棒性。然而,对于具有固定惯量控制的IIDG,有功功率的瞬态响应和角频率彼此冲突。随着工作条件的变化,有必要采用自适应控制来改善功率和频率的整体性能。本文分析了惯性对功率和角频率的影响。提出了一种双自适应惯性控制策略,以提供响应性和稳定的频率支持,并根据不同的工作条件实现功率调节和频率调节之间的平衡。给出了参数设计的原理以获得适应范围。还提出了考虑输出偏差及其持续时间的累积影响的定量评估,以直观地评估所提出的策略。该策略基于PSCAD / EMTDC和基于RTDS的硬件在环实验平台得到了进一步验证。结果证实,所提出的策略不仅可以实现快速的频率响应,而且在扰动下具有很小的动态偏差,而且可以在频率和功率之间取得平衡,从而改善了总体控制。

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