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Extra transient block for virtual synchronous machine with better performance

机译:虚拟同步机具有更好性能的额外瞬态块

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摘要

An extra transient block (ETB) for virtual synchronous machine (VSM) that is able to provide extra transient damping and adjust transient inertial to better stabilise the frequency of the VSM in a shorter time during transient period without altering the steady-state performance is proposed in this study. The ETB uses extra parallel series lead-lag blocks to get the transient frequency output to make the stability of the VSM less intensive to the parameter design of the virtual inertial and damping coefficient so that an easier parameter design method can be used. In other words, this method helps to solve the contradiction between dynamic response and stable performance, especially when the damping coefficient cannot be freely modified to increase damping for a large inertial value because of the mutual dependence between damping coefficient and droop coefficient caused by the use of inner reference frequency. Moreover, a simplified method for the parameter design of the ETB is proposed and the small-signal model of the ETB-based VSM is also derived. After that, the power coupling situation is analysed and comparisons with other control strategies are presented. Furthermore, time-domain simulation results are demonstrated to verify the effectiveness of the proposed method.
机译:用于虚拟同步机(VSM)的额外瞬态块(ETB),其能够提供额外的瞬态阻尼和调节瞬态惯性,以便在瞬态期间更好地稳定VSM的频率而不改变稳态性能。在这个研究中。 ETB使用额外的并联系列引线滞后块来获得瞬态频率输出,使VSM的稳定性较小到虚拟惯性和阻尼系数的参数设计,因此可以使用更轻松的参数设计方法。换句话说,该方法有助于解决动态响应和稳定性能之间的矛盾,特别是当由于使用的阻尼系数和下垂系数之间的相互依赖性而无法自由地修改时,增加阻尼系数以增加惯性值的阻尼内部参考频率。此外,提出了一种用于ETB的参数设计的简化方法,并且还导出了基于ETB的VSM的小信号模型。之后,分析了电力耦合情况并提出了与其他控制策略的比较。此外,证明了时域模拟结果以验证所提出的方法的有效性。

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