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Stability Analysis of a Virtual Synchronous Machine-based HVDC Link by Gear’s Method

机译:基于Gear方法的基于虚拟同步机的HVDC链路的稳定性分析

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Declining equivalent inertia caused by the massive integration of converter-based technologies can increase the risk of stability problems in the future power system. Control of HVDC systems as Virtual Synchronous Machines (VSMs) for providing emulated inertia is a promising countermeasure against this development. However, low inertia converter dominated power systems are raising new challenges for stability analysis. Thus, new numerical techniques and tools are needed for efficient and accurate analysis of small-and large-signal stability issues in complex power systems with different kinds of generation units, converter systems and control loops that can experience potential interactions, internally or with the network. Gear’s method with a variable time step, offers the possibility to obtain fast and flexible procedures for large-signal stability analysis. Additionally, it can make stability analysis efficient by combining the small-signal and large-signal analysis into the same process. This paper will show how the stability of a power system with a VSM-based HVDC link can be evaluated by the method and presents an approach for simultaneous small-and large-signal stability assessment.
机译:由基于转换器的技术的大规模集成引起的等效惯性下降,可能会增加未来电力系统中出现稳定性问题的风险。作为虚拟同步机(VSM)的HVDC系统的控制,以提供仿真惯性,是对这种发展的有前途的对策。但是,以低惯量转换器为主的电源系统正在为稳定性分析提出新的挑战。因此,需要新的数值技术和工具,以有效,准确地分析具有不同类型的发电机组,变流器系统和控制回路的复杂电力系统中的小信号和大信号稳定性问题,这些问题可能会在内部或与网络发生潜在的相互作用。 。 Gear的方法具有可变的时间步长,为快速,灵活地进行大信号稳定性分析提供了可能。此外,通过将小信号和大信号分析组合到同一过程中,可以使稳定性分析高效。本文将展示如何通过该方法评估具有基于VSM的HVDC链路的电力系统的稳定性,并提出一种同时进行小信号和大信号稳定性评估的方法。

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