三相固态变压器是适用于智能电网的一种新型的智能电力电子设备,一般包括整流输入级、双有源桥DAB(dual active bridge)直流级和逆变输出级。为解决固态变压器在大功率传输和高输入交流电压工作条件下的高频功率开关管电压电流应力问题...三相固态变压器是适用于智能电网的一种新型的智能电力电子设备,一般包括整流输入级、双有源桥DAB(dual active bridge)直流级和逆变输出级。为解决固态变压器在大功率传输和高输入交流电压工作条件下的高频功率开关管电压电流应力问题,一般采用多模块级联的拓扑结构,但这种拓扑给固态变压器带来了模块间的电压和功率不平衡问题和导致开关管过压过流及电网电流谐波增加等问题。为解决三相模块级联型固态变压器电压、功率的不平衡问题,提出一种新颖的控制策略。输入整流级采用一种基于共同占空比的三相dq0控制策略以保证输入交流电流三相对称,DAB级采用一种基于电压跟随的移相控制方法以实现模块间电压平衡,两级控制策略相配合以实现各模块间电压、功率平衡。仿真和实验均验证了所提控制策略的可行性和有效性。展开更多
This work proposes a 12 kW three-phase grid-connected single stage PWM DC-AC converter destined to process the energy provided by a photovoltaic array composed of 57 KC200GT PV modules with high power factor for any s...This work proposes a 12 kW three-phase grid-connected single stage PWM DC-AC converter destined to process the energy provided by a photovoltaic array composed of 57 KC200GT PV modules with high power factor for any solar radiation. The PWM inverter modeling and the control strategy, using dqO transformation, are proposed in order to also allow the system operation as an active power filter, capable to compensate harmonic components and react power generated by the non-linear loads connected to the mains grid. An input voltage clamping technique is proposed to impose the photovoltaic operation on the maximum power point. Simulation and experimental results are presented to validate the proposed methodology for grid connected photovoltaic generation system.展开更多
文摘三相固态变压器是适用于智能电网的一种新型的智能电力电子设备,一般包括整流输入级、双有源桥DAB(dual active bridge)直流级和逆变输出级。为解决固态变压器在大功率传输和高输入交流电压工作条件下的高频功率开关管电压电流应力问题,一般采用多模块级联的拓扑结构,但这种拓扑给固态变压器带来了模块间的电压和功率不平衡问题和导致开关管过压过流及电网电流谐波增加等问题。为解决三相模块级联型固态变压器电压、功率的不平衡问题,提出一种新颖的控制策略。输入整流级采用一种基于共同占空比的三相dq0控制策略以保证输入交流电流三相对称,DAB级采用一种基于电压跟随的移相控制方法以实现模块间电压平衡,两级控制策略相配合以实现各模块间电压、功率平衡。仿真和实验均验证了所提控制策略的可行性和有效性。
文摘This work proposes a 12 kW three-phase grid-connected single stage PWM DC-AC converter destined to process the energy provided by a photovoltaic array composed of 57 KC200GT PV modules with high power factor for any solar radiation. The PWM inverter modeling and the control strategy, using dqO transformation, are proposed in order to also allow the system operation as an active power filter, capable to compensate harmonic components and react power generated by the non-linear loads connected to the mains grid. An input voltage clamping technique is proposed to impose the photovoltaic operation on the maximum power point. Simulation and experimental results are presented to validate the proposed methodology for grid connected photovoltaic generation system.