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Impact on small-signal dynamics of using circulating currents instead of AC-currents to control the DC voltage in MMC HVDC terminals

机译:对使用循环电流而不是AC电流的小信号动态的影响,以控制MMC HVDC端子中的直流电压

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摘要

The traditional approach for controlling the dc-voltage in Voltage Source Converter (VSC) HVDC terminals is to act on the reference for the active current or active power on the ac-side. For a Modular Multilevel Converter (MMC) with explicit control of the internally stored energy, this implies that the total energy sum must be controlled by acting on the dc-components of the circulating currents. However, the internal energy storage of an MMC acts as a buffer between the transient dynamics on the ac- and dc-sides. Thus, the dynamic response of the dc-voltage will depend on the closed loop dynamics of the internal energy control. Different system characteristics can be obtained if the reference signals from the dc-voltage control and the sum energy control are interchanged. As a result, the dc-voltage controller can provide the reference value for the dc-components of the circulating current, while the sum energy controller will provide the ac-side active current reference. In this paper, it will be demonstrated by time domain simulations and eigenvalue analysis that dc-voltage control by acting on the circulating current reference introduces a decoupling between the dynamics of the ac- and dc-side interfaces. This decoupling will also make the system dynamics less sensitive with respect to the operating conditions, which enables improved dynamic performances and less strict tuning requirements for the dc-voltage and sum energy controllers.
机译:用于控制电压源转换器(VSC)HVDC端子中的DC电压的传统方法是在AC侧上的有源电流或有源电力的参考。对于模块化多电平转换器(MMC),具有明确控制内部存储的能量,这意味着必须通过在循环电流的DC组件上作用来控制总能量总和。然而,MMC的内部能量存储在AC和DC侧的瞬态动力学之间充当缓冲器。因此,DC电压的动态响应将取决于内部能量控制的闭环动态。如果来自DC电压控制的参考信号和互能量控制的参考信号,则可以获得不同的系统特性。结果,DC电压控制器可以为循环电流的DC组件提供参考值,而总和能量控制器将提供交流侧有源电流参考。在本文中,通过时域模拟和特征值分析来证明,通过在循环电流上作用的直流电压控制引入了AC和DC侧接口的动态之间的去耦。这种去耦还将使系统动态对操作条件不太敏感,这使得能够改进的动态性能,并且对直流电压和总能控制器的调整要求不太严格。

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