为了实现LCL型有源电力滤波器(active power filter,APF)在稳定控制的同时,不增加系统的复杂程度,提出了一种基于电网电流检测、逆变侧电流反馈的电流双环控制方法。在不额外增加电流传感器的情况下,通过引入逆变侧电流反馈,实现了对LC...为了实现LCL型有源电力滤波器(active power filter,APF)在稳定控制的同时,不增加系统的复杂程度,提出了一种基于电网电流检测、逆变侧电流反馈的电流双环控制方法。在不额外增加电流传感器的情况下,通过引入逆变侧电流反馈,实现了对LCL滤波器谐振尖峰的有源阻尼。同时,为了准确地跟踪电网中的谐波电流信号,在2阶广义积分器的基础上,提出了基于降阶广义积分器的电流控制器。利用降阶积分器频率选择和相序解耦的特性,同时实现了较高的谐波补偿精度和运算效率。在一台50k VA LCL型APF上对所提出的控制方法进行了实验验证,实验结果证明了该方法的有效性。展开更多
Transformerless grid-connected inverters offer greater efficiencies when transferring power from renewable energy sources to the electrical grid.If the grid-inverter connection is done with an LCL filter,high attenuat...Transformerless grid-connected inverters offer greater efficiencies when transferring power from renewable energy sources to the electrical grid.If the grid-inverter connection is done with an LCL filter,high attenuation of switching harmonics is achieved while preserving a small-size output filter.However,damping must be included in the controller to assure closed-loop stability.This paper proposes a reference computation methodology for the inverter-side current feedback in a photovoltaic(PV)generation system connected to the grid through an LCL filter.Theoretical analysis of the closed-loop system stability and of the steady-state performance are presented as well as experimental validation of the closed-loop performance.The feedback controller includes active damping and relies on a resonant control structure which improves the ability of dealing with grid harmonic distortion.The controller uses a reduced set of measurements,which requires the inverter-side current and grid voltage only,and assures a power factor close to unity.展开更多
文摘为了实现LCL型有源电力滤波器(active power filter,APF)在稳定控制的同时,不增加系统的复杂程度,提出了一种基于电网电流检测、逆变侧电流反馈的电流双环控制方法。在不额外增加电流传感器的情况下,通过引入逆变侧电流反馈,实现了对LCL滤波器谐振尖峰的有源阻尼。同时,为了准确地跟踪电网中的谐波电流信号,在2阶广义积分器的基础上,提出了基于降阶广义积分器的电流控制器。利用降阶积分器频率选择和相序解耦的特性,同时实现了较高的谐波补偿精度和运算效率。在一台50k VA LCL型APF上对所提出的控制方法进行了实验验证,实验结果证明了该方法的有效性。
文摘Transformerless grid-connected inverters offer greater efficiencies when transferring power from renewable energy sources to the electrical grid.If the grid-inverter connection is done with an LCL filter,high attenuation of switching harmonics is achieved while preserving a small-size output filter.However,damping must be included in the controller to assure closed-loop stability.This paper proposes a reference computation methodology for the inverter-side current feedback in a photovoltaic(PV)generation system connected to the grid through an LCL filter.Theoretical analysis of the closed-loop system stability and of the steady-state performance are presented as well as experimental validation of the closed-loop performance.The feedback controller includes active damping and relies on a resonant control structure which improves the ability of dealing with grid harmonic distortion.The controller uses a reduced set of measurements,which requires the inverter-side current and grid voltage only,and assures a power factor close to unity.