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Development and Application of a Fuzzy Control System for a Lead-Acid Battery Bank Connected to a DC Microgrid

机译:铅酸电池组连接到DC微电网的模糊控制系统的开发与应用

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摘要

This study presents the development and application of a fuzzy control system (FCS) for the control of the charge and discharge process for a bank of batteries connected to a DC microgrid (DC-MG). The DC-MG runs on a maximum power of 1 kW with a 190 V DC bus using two photovoltaic systems of 0.6 kW each, a 1 kW bidirectional DC-AC converter to interconnect the DC-MG with the grid, a bank of 115 Ah to 120 V lead-acid batteries, and a general management system used to define the operating status of the FCS. This FCS uses a multiplexed fuzzy controller, normalizing the controller’s inputs and outputs in each operating status. The design of the fuzzy controller is based on a Mamdani inference system with AND-type fuzzy rules. The input and output variables have two trapezoidal membership functions and three triangular membership functions. LabVIEW and the NI myRIO-1900 embedded design device were used to implement the FCS. Results show the stability of the DC bus of the microgrid when the bank of batteries is in the charging and discharging process, with the bus stabilized in a range of 190 V ± 5%, thus demonstrating short response times to perturbations considering the microgrid’s response dynamics.
机译:本研究介绍了一种用于控制连接到DC微电网(DC-MG)的电池的电池的充电和放电过程的模糊控制系统(FCS)的开发和应用。 DC-MG在1 kW的最大功率上运行,使用0.6 kW的两个光伏系统,一个1 kW双向DC-AC转换器与电网相互连接,一个115°的银行,1 kW双向DC-AC转换器到120 V铅酸电池和用于定义FCS的运行状态的一般管理系统。此FCS使用多路复用的模糊控制器,将控制器的输入和输出标准化在每个操作状态下。模糊控制器的设计基于Mamdani推理系统,具有型模糊规则。输入和输出变量具有两个梯形隶属函数和三个三角形隶属函数。 LabVIEW和NI Myrio-1900嵌入式设计设备用于实现FCS。结果表明,当电池组处于充电和放电过程时,微电网的直流总线的稳定性,总线稳定在190 v±5%的范围内,从而展示了考虑到微电网的响应动态的扰动时间短响应时间。

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