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Parameter Constraints for Virtual Synchronous Generator Considering Stability

机译:考虑稳定性的虚拟同步发电机参数约束

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A virtual synchronous generator (VSG) control for converters has been proposed as a method to provide virtual inertia from power electronics connected generation and storage. Most works to date have analyzed VSG control under the assumption that the VSG dynamics are much slower than that the converter. This work shows that when converter and line dynamics are taken into account, the virtual inertia and damping settings are constrained by stability considerations. These conditions for stability are analyzed based on a simple transfer function approach. It is shown that for the VSG to be stable and validly approximated by a second-order system, the ratio of damping to virtual inertia is a key parameter. This letter quantifies how these VSG parameters are constrained by stability. The transfer function analysis is validated using full switching model simulations of stable and unstable cases.
机译:已经提出了用于转换器的虚拟同步发电机(VSG)控制,作为从连接的发电和存储的电力电子设备提供虚拟惯性的方法。迄今为止,大多数工作都是在VSG动态比转换器慢得多的假设下分析VSG控制的。这项工作表明,考虑转换器和线路的动力学特性时,虚拟惯性和阻尼设置受稳定性考虑的限制。基于简单传递函数方法分析了这些稳定性条件。结果表明,要使VSG稳定并有效地被二阶系统近似,阻尼与虚拟惯量之比是关键参数。这封信量化了这些VSG参数如何受稳定性约束。传递函数分析通过使用稳定和不稳定情况的完整切换模型仿真来验证。

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