基于PI控制器的PV与电池微电网仿真协调控制

A. Kusmantoro, T. Hiyama
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引用次数: 0

摘要

用途:光伏(PV)的输出功率随太阳辐射强度的变化而变化。因此,本研究的目的是利用公用事业并网系统来克服太阳能来源和负荷的变化。这样做是为了保持负载的不间断电源供应。方法:在本研究中,我们提出了一个由多个DC-DC变流器与多个光伏电源和电池并联的并网光伏系统,并进行PI控制协调。该方法包括两个阶段,即DC-DC变换器开发阶段和电池管理策略阶段。结果:研究结果表明,在0秒到0.45秒内,直流母线有PV供电。由于PV的变化,在0.45秒到0.65秒内,直流母线被提供单元1电池。当单元1电池发生变化时,在0.65秒到0.8秒内,直流母线将提供单元2电池。通过使用光伏协调安排和电池单元,即使光伏或电网发生变化,微电网仍能向负载供电。新颖性:本研究的新颖性是一种新的微电网配置,以增加电力负荷的需求。新配置采用多pv +多电池。多组光伏用于供电并存储在多组电池中,而多组电池在夜间和光伏输出受到干扰时使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation Coordination Control of PVAnd Battery On Microgrid With PI Controller
Purpose: The output power of PV (photovoltaic) changes according to changes in the intensity of solar radiation. Therefore, the purpose of this study is to use a utility grid connected system to overcome changes in solar energy sources and loads. This is done to maintain an uninterrupted power supply to the load.Methods: In this study, we propose a grid-connected PV system with several DC-DC converters connected in parallel with several PV sources and batteries with PI control coordination. The proposed method includes two stages, namely the DC-DC converter development stage and the battery management strategy stage.Results: The study results show that within 0 seconds to 0.45 seconds the DC bus is supplied with PV. Due to the change in PV, within 0.45 seconds to 0.65 seconds the DC bus is supplied with unit-1 battery. When there is a change in the unit-1 battery, within 0.65 seconds to 0.8 seconds the DC bus is supplied with the unit-2 battery. By using PV coordination arrangements and battery units, the microgrid can still supply power to the load even if changes occur in the PV or grid.Novelty: The novelty in this study is a new microgrid configuration to increase the demand for electrical loads. The new configuration uses multi-PV and multi-battery. Multi-PV is used to supply the load and is stored in the multi-battery, while multi-battery is used at night and if there is a disturbance at the PV output.
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