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Voltage Sensorless Control of a Three-phase Grid Connected Inverter with LCL filter based on Passivity under Non-ideal Grid Voltage Conditions

机译:基于非理想电网电压条件下的磁控性,通过LCL滤波器对三相网格连接逆变器的电压无传感器控制

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Voltage sensing in a three phase grid connected inverter is expensive and introduces vulnerability in the presence of faulty components. To cater and mitigate for this problem, here, a sensorless current control strategy is implemented that consists of two basic elements. First, a passivity-based current controller is derived using the assumption of known grid voltage. Next, a dual second-order generalized integrator (DSOGI) structure is utilized to extract the positive sequence grid voltage from the passivity-based current controller outputs using simple algebraic manipulations based on the basic circuit equations. These positive sequence estimated grid voltages are utilized in the passivity based current controller to achieve the necessary required control action. The proposed methodology has been verified on a reduced scale laboratory prototype was built and experimental validation of the proposed control come estimation technique was verified.
机译:三相网格连接逆变器中的电压感测昂贵,并在存在故障组件时引入漏洞。为了满足此问题,这里实现了无传感器电流控制策略,由两个基本元素组成。首先,使用已知网格电压的假设导出基于基于基于的电流控制器。接下来,利用双二阶通用积分器(DSoGi)结构来利用基于基本电路方程的简单代数操纵从基于基于基于基于的电流控制器输出的正序列网格电压。这些正序列估计的电网电压在基于主的电流控制器中用于实现必要的所需控制动作。所提出的方法已经在减少的规模实验室原型上验证了建立的,并验证了所提出的控制的实验验证。

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