Improvement of the multifunctional converter of the photoelectric system with a storage battery for a local object with connection to a grid

Olexandr Shavolkin, I. Shvedchykova
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引用次数: 7

Abstract

The issues of improving the multifunctional converter with the combination of the function of the active filter for a photoelectric power system with a storage battery for a local object with a connection to the grid are considered. The principles of autonomous operation mode implementation with the use of the current value of the short-circuit current of the photovoltaic battery and the regulation of load power are developed. The control system of the unit with alterable structure of regulators is improved. It contains: internal current control loop of grid inverter, external voltage stabilization loop at the inverter input at work with grid and circuit with regulator of load voltage in autonomous mode. Depending on the power of the photovoltaic battery and the load, the maximum and actual value of the current of the photovoltaic battery, the degree of charge of the storage battery, limiting the current of the grid, the voltage stabilization is provided by regulating the current of the grid or current of a photovoltaic battery or current of a storage battery. This is carried out by one of the three voltage regulators, determined by the control unit. In autonomous operation mode, to maintain the possibility of recharging the storage battery, simultaneous operation of the channels for regulating the current of the photovoltaic battery and the storage battery current is possible while reducing the load voltage within acceptable limits; the maximum power mode of the photovoltaic battery is set according to the measured value of the short-circuit current of it. There is a mode of compelled storage battery charge for multi-zone tariffing. The results of simulation of the system “grid - converter - load” confirm the efficiency of the proposed solutions.
一种用于连接电网的局部物体的带蓄电池的光电系统多功能变换器的改进
研究了将光电电源系统有源滤波器与局部并网物体蓄电池相结合的多功能变换器的改进问题。提出了利用光伏电池短路电流的电流值和负载功率调节实现自主运行模式的原理。对调节器结构可变的机组控制系统进行了改进。它包括:电网逆变器的内部电流控制回路、与电网一起工作时逆变器输入端的外部稳压回路和负载电压自动调节电路。根据光伏电池和负载的功率,光伏电池电流的最大值和实际值,蓄电池的充电程度,限制电网的电流,通过调节电网的电流或光伏电池的电流或蓄电池的电流来提供稳压。这是由三个电压调节器中的一个进行的,由控制单元确定。在自主运行模式下,为了保持蓄电池充电的可能性,在将负载电压降低到可接受范围内的同时,可以同时运行调节光伏电池电流和蓄电池电流的通道;根据光伏电池短路电流的测量值设置光伏电池的最大功率模式。有一种多区收费的蓄电池强制收费模式。系统“电网-变流器-负荷”的仿真结果验证了所提方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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