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Virtual Synchronous Machine-Based Control of a Single-Phase Bi-Directional Battery Charger for Providing Vehicle-to-Grid Services

机译:基于虚拟同步机的单相双向电池充电器控制,以提供车辆到电网服务

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摘要

This paper presents a single-phase virtual synchronous machine (VSM) and its possible application for providing vehicle-to-grid (V2G) services from domestic battery chargers of electric vehicles (EVs). In a VSM, the power converter is controlled to emulate the inertia and damping effect of a synchronous machine. Thus, a VSM-based EV charger can contribute to the spinning reserve and the frequency regulation of the power system. In case of grid outages, the VSM can seamlessly establish an islanded grid and supply local loads from the battery onboard the EV. In order to avoid the influence on the virtual inertia from power oscillations associated with a single-phase circuit, the proposed control scheme relies on a virtual two-phase system for calculating active and reactive powers. The proposed VSM implementation is described in detail, and its dynamic performances in grid-connected as well as stand-alone operation are demonstrated by numerical simulations and by laboratory experiments.
机译:本文提出了一种单相虚拟同步机(VSM)及其在通过电动汽车(EV)的家用电池充电器提供车对网(V2G)服务方面的应用。在VSM中,控制功率转换器以模拟同步电机的惯性和阻尼效果。因此,基于VSM的EV充电器可有助于旋转储备和电力系统的频率调节。万一发生电网故障,VSM可以无缝建立孤岛电网,并通过EV上的电池提供本地负载。为了避免与单相电路相关的功率振荡对虚拟惯性的影响,提出的控制方案依赖于虚拟两相系统来计算有功功率和无功功率。详细介绍了所提出的VSM实现,​​并通过数值模拟和实验室实验证明了其在并网以及独立运行中的动态性能。

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