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Optimization Design and Feature Research on VSG Control Strategy of Marine Photovoltaic Grid-connected Inverter

机译:船用光伏电网连接逆变器VSG控制策略的优化设计与专题研究

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Aiming at improving the schedulability and stability of photovoltaic (PV) system that integrated within the ship power system (SPS), this paper proposes a virtual synchronous generator (VSG) based control strategy for the PV grid-connected inverter. The virtual inertia power is introduced into the reference power value by a first-order inertia function, so as to change the inertia and damping characteristics of the inverter and show similar operating features as those of traditional diesel synchronous generator (DG). Both droop control and logic threshold control strategies are applied to realize the automatic power distribution between the inverter and the generator. Under the simulation environment of PSCAD/ EMTDC software, an original marine PV grid-connected power system model is established. The simulation cases are discussed under two typical operation conditions, which are depended on whether or not the power management system (PMS) is put into the utilization. Then, the active/reactive power distribution response and frequency fluctuation characteristics of these two power sources are compared by applying the traditional constant power (PQ) control and VSG control strategy respectively. The results show that this novelty VSG control strategy has immediate effectiveness in suppressing the frequency fluctuation of the power grid, and realizing the automatic and proportional output power adjustment for the grid-connected inverter, which can significantly improve the grid stability.
机译:旨在提高集成在船舶电源系统(SPS)内的光伏(PV)系统的调度和稳定性,本文提出了一种基于PV网格连接逆变器的基于虚拟同步发电机(VSG)的控制策略。通过一阶惯性功能将虚拟惯性电源引入参考功率值,以改变逆变器的惯性和阻尼特性,并显示与传统柴油同步发电机(DG)相似的操作功能。垂直控制和逻辑阈值控制策略都适用于实现逆变器和发电机之间的自动功率分配。在PSCAD / EMTDC软件的仿真环境下,建立了原始船用PV电网连接电力系统模型。在两个典型的操作条件下讨论模拟情况,依赖于电源管理系统(PMS)是否被投入使用。然后,通过分别应用传统的恒功率(PQ)控制和VSG控制策略来比较这两个电源的主动/无功分配响应和频率波动特性。结果表明,此新颖VSG控制策略具有在抑制电力网的频率波动,实现了并网逆变器,其可改善显著电网稳定性的自动和成比例的输出功率调整即时效果。

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