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Improvement of the Three-Phase Multifunctional Converter of the Photoelectric System with a Storage Battery for a Local Object with Connection to a Grid

机译:带蓄电池的光电系统三相多功能转换器的改进,用于与电网连接的局部物体

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The improvement of a three-phase multifunctional converter with the function of an active filter for a photoelectric system with a storage battery for a local object with connection to a grid is considered. Principles for regulating the generation of photovoltaic batteries, the illumination of which can be different, with using a common controller with the introduction of an individual of current limit, which is determined in accordance with the measured value of the short-circuit current of each photovoltaic battery; principles of implementing an autonomous mode with regulation of the load voltage of the object, which allows for the close values of the load power and the current value of the maximum power of photovoltaic batteries to provide an increase in the energy accumulated in the battery has been developed. The output filter is improved, which will provide value $mathrm{THD} i_{g} leq 5 %$ for while reduce almost 2 times the capacitance of the filter capacitor and reduce the PWM frequency to 9 kHz. A variant of the unit control system is proposed, which has a variable structure using the internal current control loop of a grid inverter and three voltage controllers to stabilize the voltage at the inverter input. The choice of controller is carried out by the control unit, taking into account the limitation of energy generation at the grid and the degree of battery charge. In stand-alone mode, the structure and settings of the current control loop are changed. Only a proportional link is used and to reduce energy losses in the inverter, the PWM frequency is reduced to 4 kHz at $mathrm{THD} u_{L} leq 5 %$. It was found that to eliminate the DC component in the grid phase currents with an unbalanced load, the capacitance of the capacitors at the inverter input should be increased while the coefficient of the proportional link of the voltage controllers is reduced. The simulation results of the photoelectric system confirm the efficiency of the proposed solutions.
机译:考虑了具有用于局部对象的蓄电池的光电系统功能的三相多功能转换器的改进,用于局部对象,该蓄电池具有用于网格的局部对象。用于调节光伏电池的产生的原理,其照明可以是不同的,使用公共控制器引入电流极限的个体,这根据每个光伏的短路电流的测量值确定的电池;实现自主模式的原理,具有对物体的负载电压的调节,允许负载功率的关闭值和光伏电池的最大功率的电流值,以提供电池中累积的能量的增加发达。提高了输出滤波器,这将提供价值$ \ mathrm {thd} i_ {g} \ leq 5 \%$ of in interving inters电容器电容的近2倍,并将PWM频率降低到9kHz。提出了一种单元控制系统的变型,其使用网格逆变器的内部电流控制环和三个电压控制器具有可变结构,以稳定逆变器输入处的电压。控制器的选择由控制单元执行,考虑到电网处的能量产生和电池充电程度的限制。在独立模式下,改变了当前控制回路的结构和设置。仅使用比例链路并降低逆变器中的能量损失,PWM频率在$ \ mathrm {thd} u_ {l} \ leq 5 \%$。发现,为了消除具有不平衡负载的电网相电流中的DC分量,应增加逆变器输入处的电容器的电容,同时减小了电压控制器的比例链路的系数。光电系统的仿真结果证实了提出的解决方案的效率。

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