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Power Control of Virtual Oscillator Controlled Inverters in Grid-Connected Mode

机译:并网模式下虚拟振荡器控制的逆变器的功率控制

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This paper proposes a novelmethod to determine and control active and reactive power output of the virtual ocillator control-based inverter in grid-connected mode. An analytical expression is introduced to describe the quasi-steady-state relationship between the parameters of the inverter including its controllers, and the power injection and voltage at the inverter terminals. We introduce a new, complex valued parameter (K) to the conventional virtual oscillator control (VOC) scheme in order to control the inverter output power. We compare analytic and numeric solutions of the above analytical expression with time-domain simulation results, using different K values and line impedances to validate the analytical expression. In the second part of the paper, we design a controller: we use the above expression to derive K for given reference powers and use adaptive integrators to compensate for the remaining errors. We compare this control scheme to a method that uses PI controllers, and also to a simple decoupling method for independent control of active and reactive power. The controller based on the analytical method exhibits very good dynamic and decoupling performance. A single VOC-controlled inverter connected to a nonstiff grid is simulated in MATLAB/Simulink for demonstration, and is also validated using real-time simulations.
机译:本文提出了一种新颖的方法来确定和控制基于并网模式的虚拟振荡器控制逆变器的有功和无功输出。引入解析表达式来描述逆变器(包括其控制器)的参数与逆变器端子处的功率注入和电压之间的准稳态关系。为了控制逆变器的输出功率,我们向传统的虚拟振荡器控制(VOC)方案中引入了一个新的复数值参数(K)。我们将上述解析表达式的解析解和数值解与时域仿真结果进行比较,使用不同的K值和线阻抗来验证解析表达式。在本文的第二部分中,我们设计了一个控制器:我们使用上述表达式来得出给定参考功率的K,并使用自适应积分器来补偿剩余的误差。我们将此控制方案与使用PI控制器的方法进行比较,并与用于有功和无功功率的独立控制的简单解耦方法进行比较。基于分析方法的控制器具有很好的动态和去耦性能。在MATLAB / Simulink中对连接到非刚性电网的单个VOC控制的逆变器进行了仿真,以进行演示,并使用实时仿真对其进行了验证。

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