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光伏发电技术 储能系统 户用光伏 地面光伏电站 ★ 5.0

用于住宅电力管理的光伏-电网集成系统

A Photovoltaic-Grid Integrated System for the Residential Power Management

作者 Ande Bala Naga Lingaiah · Narsa Reddy Tummuru
期刊 IEEE Transactions on Sustainable Energy
出版日期 2024年9月
技术分类 光伏发电技术
技术标签 储能系统 户用光伏 地面光伏电站
相关度评分 ★★★★★ 5.0 / 5.0
关键词 光伏-市电集成系统 电动汽车充电 交错H桥配置 功率传输 控制算法
语言:

中文摘要

本文提出一种用于住宅管理中电动汽车充电的光伏-电网集成系统,结合感应式电能传输技术。采用BBIHB结构将光伏源与前端变换器直流母线集成,同时实现最大功率追踪与电能传输。通过光伏与变换器直流链路的串联连接,提升感应传输系统的直流母线电压,增强传输能力。前端变换器支持电网与系统间的双向功率流动,平衡功率缺额或盈余。文中建立了系统模型并设计了控制策略,具备固有升压、控制简单及无需独立光伏变换器等优点。实验平台在4kW输出下验证了系统性能,DC-DC效率达94%。

English Abstract

This paper proposes a photovoltaic (PV)-Utility integrated system with inductive power transfer (IPT) for electric vehicle (EV) charging applications in residential management applications. To realize this objective, a buck boost-interleaved H-bridge (BBIHB) configuration is proposed to integrate the PV source with the DC link of the front end converter (FEC) while achieving maximum power from the PV and power delivery to the IPT simultaneously. The DC bus of the IPT in the proposed system is obtained through the additive connection of the PV and FEC DC-link, which results in inherent boost of the DC bus voltage for the IPT system thus enhances the transmission power for the EV charging. Furthermore, the FEC allows bidirectional power flow between the utility and BBIHB converter by sharing the deficient or excess power in the system based on PV power availability. The complete modeling of the system and a control algorithm to achieve the above mentioned objectives is presented in this paper. Other features of the proposed system include inherent voltage boosting, a simple control strategy, and the absence of a separate converter for the PV to extract maximum power. Finally, an experimental hardware setup is developed in the laboratory and tested up to 4 kW of output power to validate the proposed system's performance, achieving a maximum DC-to-DC efficiency of 94% at this condition.
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SunView 深度解读

该光伏-电网集成系统对阳光电源户用光储充产品线具有重要参考价值。文中提出的BBIHB拓扑将光伏MPPT与DC-DC变换集成,可优化SG系列户用逆变器的前端架构,减少独立光伏变换器级数,提升系统效率至94%。双向功率流控制策略可直接应用于ST系列储能变流器,实现光伏-电网-负载的灵活调度。感应式电能传输技术为阳光电源车载OBC和充电桩产品提供无线充电方案的技术储备。串联升压方案可提升1500V系统的直流母线利用率,增强大功率传输能力。该集成化设计理念契合户用光储充一体机的产品发展方向,有助于降低系统成本、提高功率密度。