基于太阳能光伏和BESS的家庭能源系统

Soha H. Metwally, Xiaolei Zhang, S. Ali, H. Krishnamoorthy
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引用次数: 3

摘要

住宅分布式能源(DER),特别是可再生能源的渗透率在全球范围内迅速增长,因为它为客户节省了电力成本,而且对环境的影响较小。本文通过不同的场景-案例研究来展示DER如何增强电网并帮助减轻电网干扰,以及如何作为网格资源来加快系统响应和恢复。利用Matlab/Simulink建立了一个简单的模型,突出了利用电压控制在整个系统中的自动控制。该模型由基于升压变换器的最大功率点跟踪(MPPT)集成到电网的光伏系统和通过双向DC/DC变换器集成的电池储能系统(BESS)组成。对不同变换器类型进行了比较,并对系统配置参数进行了计算,对模型进行了优化。并对并网和孤岛两种运行方式下,受环境参数和负荷需求影响的光伏发电出力进行了仿真,验证了系统的合理设计和配置。然后在该模型上估计了平准化电力成本(LCOE)和平准化交付成本(LCOD),证明了基于当前市场,特别是在农村地区实施微电网的前景广阔。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar PV and BESS based Home Energy System
Penetration of residential distributed energy resources (DER), especially renewable energy resources, is increasing rapidly all over the world due to the electricity cost savings to customers and less environmental impact. This paper performs different scenario - case study to show how DER could strengthen the grid and help mitigate grid disturbances, as well as function as the grid resource for faster system response and recovery. A simple model built using Matlab/Simulink, highlights the automated control across the system utilizing voltage control. The model consists of a PV system integrated to the grid through a boost converter based Maximum Power Point Tracking (MPPT), and a Battery Energy Storage System (BESS) integrated through a bi-directional DC/DC Converter. Comparison of different converter types is conducted, and calculation of system configuration parameters is done to optimize the model. Different PV outputs influenced by environmental parameters and different load demand are also simulated under both grid-connected and islanded operation mode proving the system is properly designed and configured. Levelized Cost of Electricity (LCOE) and Levelized Cost of Delivery (LCOD) are then estimated on the model, proving the promising future of microgrid implementation based on the current market, especially in rural areas.
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