Rooftop PV with battery storage for constant output power production considering load characteristics

Nasim Jabalameli, S. Deilami, M. Masoum, Farhad Shahnia
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引用次数: 14

Abstract

One of the main limitations of rooftop photovoltaic generation systems (rooftop PVs) is the dependency of their output power to environmental factors such as sun radiation, panel temperature, passing clouds and shading, as well as loading level (operating point on v-i characteristics). This dependency may result in sudden output power variations of rooftop PVs particularly during cloudy periods. This paper investigates application and control of battery storage (BS) systems to overcome the sudden output power variations of rooftop PVs. A practical battery storage energy management strategy (BS-EMS) for operating grid-connected rooftop PVs at point of common coupling (PCC) is presented such that the delivered output power to the grid is constant under various operating conditions. The power balance between rooftop PV, BS and grid is considered by dynamic control of the BS converter to achieve constant output power to the grid during daylight. Simulation results for a 24-hour period will be presented and analyzed to investigate the performance of BS-EMS for a system comprising of a single-phase rooftop PV with BS and linear loads connected to power grid.
考虑负载特性,具有恒定输出功率生产的电池存储的屋顶光伏
屋顶光伏发电系统(屋顶pv)的主要限制之一是其输出功率依赖于环境因素,如太阳辐射、面板温度、通过的云层和遮阳,以及负载水平(v-i特性的工作点)。这种依赖性可能会导致屋顶pv的突然输出功率变化,特别是在多云时期。本文研究了电池储能系统的应用和控制,以克服屋顶光伏发电系统输出功率的突然变化。提出了一种实用的屋顶光伏并网电池储能管理策略(BS-EMS),使其在各种运行条件下向电网输送的输出功率恒定。通过对BS变流器的动态控制,考虑屋顶光伏、BS和电网之间的功率平衡,实现白天向电网输出恒定功率。24小时的模拟结果将被展示和分析,以研究BS- ems系统的性能,该系统由单相屋顶光伏与BS和线性负载连接到电网组成。
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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