基于自适应神经模糊推理系统的混合动力独立系统电池充电控制器

Needhu Varghese, P. Reji
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引用次数: 10

摘要

混合独立电力系统在偏远和岛屿地区提供了一种可实现的安排,在这些地区,电网连接在经济上或实际上都不合适。然而,可再生能源的间歇性方式和发电与负荷需求的不匹配是主要挑战。在这种情况下,需要储能设备来保证高效、可靠和安全的供电。对每个发电机组和储能装置进行适当的控制是必要的。本文提出了一种单机应用的直流连接混合太阳能风能系统。太阳能和风能被用作基本能源,电池单元被认为是一个存储,以照顾负载需求。采用自适应神经模糊推理系统计算太阳能系统跟踪最大功率时的面板电压。它同样用于计算太阳能和风能的非线性和不规则性质所产生的最大功率。提出了一种通用的电源管理策略,用于监控系统中不同能源之间的电源流以及电池的充电和放电。利用MATLAB/Simulink建立了混合能源系统的仿真模型,并在不同的辐照、温度和风力条件下进行了试验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Battery charge controller for hybrid stand alone system using adaptive neuro fuzzy inference system
Hybrid stand-alone power systems offer an achievable arrangement in remote and island zones where grid connection is not monetarily or in fact suitable. Nonetheless, the intermittent way of renewable energy sources and mismatch between the generated power and load demand are the principle challenge. In this way energy storage device is required to ensure efficient, reliable and secure power supply. An appropriate control for each generating unit and energy storage device is imperative. This paper proposes a DC linked hybrid solar wind energy system for stand-alone applications. Solar and wind energy are used as essential energy sources and battery unit is considered as a storage to take care of the load demand. Adaptive neuro fuzzy inference system is used to compute the panel voltage at which the maximum power can be tracked for solar system. It is likewise used to figure the maximum power created by nonlinear and irregular nature of solar and wind energy sources. A general power management strategy is intended for the proposed system to oversee power streams among the distinctive energy sources and charging and discharging of the battery in the system. A simulation model for the hybrid energy system has been created utilizing MATLAB/Simulink and tried for different irradiation, temperature and wind conditions.
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