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Voltage Stability in a Grid-Connected Inverter With Automatic Volt-Watt and Volt-VAR Functions

机译:具有自动伏特和伏特-VAR功能的并网逆变器的电压稳定性

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The growing uptake of solar power in low-voltage grids across the world has drawn attention to potential overvoltage issues. In an effort to mitigate overvoltage, automatic Volt-Watt and Volt-VAR inverter response functions have been introduced in recent standards. The utility of these functions has been established in a number of recent studies. However, relatively little analysis exists on the stability of grid-connected inverters where decentralized operation of these response functions can potentially trigger undesirable interactions. This paper presents a rigorous stability analysis of a grid-connected inverter under simultaneous operation of automatic Volt-Watt and Volt-VAR response functions. Conditions for the existence of an equilibrium voltage are established together with tests that characterize its stability in terms of the inverter and line parameters. The analysis reveals a little-known stability vulnerability arising when both Volt-Watt and Volt-VAR functions are in operation if Watt output takes precedence over the provision of VAR support, a generally recommended setting. To circumvent this vulnerability, the proposed stability tests allow parameter selection for guaranteed stability margins. A safe configuration alternative is also identified to avoid instability at the expense of real power output. Numerical methods to compute equilibrium voltages are presented and used in two illustrative numerical studies.
机译:全世界低压电网对太阳能的吸收不断增长,已引起人们对潜在过电压问题的关注。为了减轻过电压,最近的标准中引入了自动Volt-Watt和Volt-VAR逆变器响应功能。这些功能的效用已经在许多近期研究中得到确立。但是,关于并网逆变器的稳定性的分析很少,因为这些响应功能的分散操作可能会触发不良的相互作用。本文介绍了在同时具有自动Volt-Watt和Volt-VAR响应功能的情况下并网逆变器的严格稳定性分析。建立平衡电压的存在条件,并根据逆变器和线路参数确定其稳定性的测试。分析揭示了一个鲜为人知的稳定性漏洞,如果瓦特输出优先于提供VAR支持(通常建议的设置),则在同时运行Volt-Watt和Volt-VAR功能时会出现。为了避免此漏洞,建议的稳定性测试允许选择参数以保证稳定性裕度。还确定了一种安全的配置替代方案,以避免不稳定,以有功功率输出为代价。提出了计算平衡电压的数值方法,并将其用于两个说明性数值研究中。

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