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应急电源,支持太阳能光伏发电与电池储能及无线接口集成。

Emergency power supply enabling solar PV integration with battery storage and wireless interface.

作者信息

Ghosh Aratrika, Gamage Don, Ukil Abhisek, Hu Aiguo Patrick

机构信息

Electrical, Computer, and Software Engineering, The University of Auckland, Auckland, New Zealand.

出版信息

J R Soc N Z. 2024 Feb 26;55(4):1028-1050. doi: 10.1080/03036758.2024.2314476. eCollection 2025.

Abstract

This paper presents a detailed investigation of an emergency power supply that enables solar photovoltaic (PV) power integration with a battery energy storage system (BESS) and a wireless interface. Through the utilisation of solar PV-based generation and BESS with wireless/contactless power transmission, the proposed method offers an easy-to-setup and flexible alternative solution for the emergency power supply (EPS) for household appliances and wireless electric vehicle (EV) charging for all weather conditions. During bad weather conditions, the battery acts as the main power supply and can be charged from the solar PV panel and during rainy days, it can be charged from the grid by the proposed wireless interface for emergency use. The proposed system is analysed by mathematical modelling, focusing on the interface of the solar PV, BESS, and load, with inductive power transfer (IPT) as a wireless power transfer (WPT) method. The simulation and a scaled-down experimental prototype are built to demonstrate that the proposed system enables wireless power transfer with PV and BESS, and easy installation can be achieved by just placing the primary charging coil of the proposed power supply close to the wireless charging pad that is available in the existing system for e.g. EV charging. The results show that the load voltage is kept constant at 48 V against the varying input characteristic of the solar panel which is the solar irradiance ranging from 20% to 100% and output characteristics of the load of the proposed integrated system with variation of 20-50%, respectively. Moreover, the wireless power transfer efficiency across the inductive coils is maintained at about 97% under these variations.

摘要

本文详细研究了一种应急电源,该电源能使太阳能光伏(PV)电力与电池储能系统(BESS)及无线接口集成。通过利用基于太阳能光伏的发电以及具备无线/非接触式电力传输功能的BESS,所提出的方法为家用电器的应急电源(EPS)以及全天候的无线电动汽车(EV)充电提供了一种易于设置且灵活的替代解决方案。在恶劣天气条件下,电池充当主要电源,可由太阳能光伏板充电,在雨天,它可通过所提出的无线接口从电网充电以供应急使用。所提出的系统通过数学建模进行分析,重点关注太阳能光伏、BESS和负载的接口,并将感应功率传输(IPT)作为无线电力传输(WPT)方法。构建了仿真和缩小比例的实验原型,以证明所提出的系统能够实现光伏和BESS的无线电力传输,并且通过将所提出电源的初级充电线圈靠近现有系统(例如用于EV充电的系统)中可用的无线充电板放置,即可轻松实现安装。结果表明,针对太阳能面板变化的输入特性(即太阳辐照度范围为20%至100%)以及所提出的集成系统负载变化20 - 50%的输出特性,负载电压保持恒定在48V。此外,在这些变化情况下,感应线圈之间的无线电力传输效率保持在约97%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c51d/12054592/6ad96a5d4463/TNZR_A_2314476_F0001_OC.jpg

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