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A Voltage Sensorless Control of a Three Phase Grid Connected Inverter Based on Lyapunov Energy Function Under Unbalanced Grid Voltage Condition

机译:电网电压不平衡条件下基于李雅普诺夫能量函数的三相并网逆变器无电压传感器控制

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Voltage sensing in a three-phase grid-connected inverter can be expensive, and introduces vulnerability to the sensor's failure. To address this problem, a sensorless current control strategy is introduced which is composed of two basic elements. First, a current controller based on a Lyapunov energy function is derived by 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 Lyapunov-based current controller outputs and generate the unit vectors from the phase locked loop. The methodology presented has been verified in simulation using MATLAB/Simulink and PLECS. Experimental validation is provided by a reduced scale laboratory prototype.
机译:三相并网逆变器中的电压感测可能会很昂贵,并且会导致传感器故障的脆弱性。为了解决这个问题,引入了一种无传感器电流控制策略,该策略由两个基本元素组成。首先,通过假定电网电压已知,得出基于李雅普诺夫能量函数的电流控制器。接下来,利用双二阶广义积分器(DSOGI)结构从基于Lyapunov的电流控制器输出中提取正序电网电压,并从锁相环生成单位矢量。所提供的方法已在使用MATLAB / Simulink和PLECS的仿真中得到了验证。缩小规模的实验室原型提供了实验验证。

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