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Practical limit of synthetic inertia in full converter wind turbine generators: Simulation approach

机译:全转炉风力发电机中合成惯性的实际极限:仿真方法

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The massive integration of wind power using power converters has imposed several challenges to the future power system. One of them is related to the decoupling effect of new power sources from the AC power grid, incapacitating their natural frequency response. This situation negatively affects the system frequency response (SFR). This aim of this paper is to establish the practical limits of synthetic inertia gain in the inertia controller used in full converter wind turbine generators. Time-domain simulations using a simple test system are used for illustrative purposes in this paper. This paper considers full converter wind turbine (FCWT) - Type 4 using direct-drive (DD) permanent magnet synchronous generator (PMSG). The main contribution of this paper is to demonstrate there is a limit of the inertia controller gain (Hsyn) and its relationship with the real wind turbine inertia constant (HWTG).
机译:使用功率转换器对风电进行大规模集成,给未来的电力系统带来了一些挑战。其中之一与新电源从交流电网的去耦效应有关,从而使它们的固有频率响应丧失了能力。这种情况会对系统频率响应(SFR)产生负面影响。本文的目的是在全转炉风力发电机中使用的惯性控制器中建立合成惯性增益的实际限制。本文将使用简单测试系统的时域仿真用于说明目的。本文考虑使用直接驱动(DD)永磁同步发电机(PMSG)的4型全转换器风力涡轮机(FCWT)。本文的主要贡献是证明惯性控制器增益(Hsyn)有一个极限,以及它与实际风力发电机惯性常数(HWTG)的关系。

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