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储能系统技术 储能系统 多物理场耦合 ★ 5.0

基于多抽头参数可重构耦合结构与离散铁氧体桥的双向长距离感应电能传输系统

A Bidirectional Long-Range IPT System Based on Multitap Parameter Reconfigurable Coupling Structure With Discrete Ferrite Bridge

作者 Peng Gu · Xingzhen Guo · Yunrui Hao · Dongsheng Yang · Bowen Zhou · Yijie Wang
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2024年10月
技术分类 储能系统技术
技术标签 储能系统 多物理场耦合
相关度评分 ★★★★★ 5.0 / 5.0
关键词 光伏储能 感应电能传输 离散铁氧体桥 多抽头自耦线圈 双向电能传输
语言:

中文摘要

提出一种基于改造110-kV支柱绝缘子的光伏-储能结合米级感应电能传输(IPT)系统,实现双向能量流动。设计离散铁氧体桥(DFB)以提升耦合系数,分析其附加铁损及对绝缘性能的影响。为降低光照强度波动对光伏系统的影响,提出多抽头自耦线圈结构,通过切换原副边抽头调节系统直流电压变比。构建双向三阶段IPT系统样机,总长1.66 m,实验验证系统最大效率达88.9%。

English Abstract

A photovoltaic-energy storage combined meter-range inductive power transfer (IPT) system achieved bidirectional power flow by modifying 110-kV post-insulator is proposed. In order to further improve the efficiency of meter-range IPT system, the discrete ferrite bridge (DFB) is designed to improve the coupling coefficient. Besides, the additional core loss generated by DFB is analyzed, and the impact of DFB on the insulation characteristics of the post-insulator is analyzed. Committed to reduce the degree of the photovoltaic system affected by light intensity, a multitap self-coupling coil is proposed. The dc voltage transformation ratio of the system can be changed by adjusting the switchable taps of the primary or secondary side. The architecture of the bidirectional IPT system is proposed to achieve energy self-sufficiency of the combined system. The power can be supplied to the state detection equipment located on the high-voltage (HV) side of the post-insulator through the combination of photovoltaic panels and energy storage system. The circuit model of the IPT system is established, and the power transfer characteristics and each part losses of the system are analyzed. A bidirectional three-stage IPT system prototype with a total length of 1.66 m is established. Experiments are completed and the maximum efficiency of the system could reach 88.9%.
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SunView 深度解读

该双向长距离IPT技术对阳光电源储能与充电业务具有重要应用价值。多抽头参数可重构结构可应用于ST系列储能变流器的宽电压范围适配,通过动态调节耦合参数应对光储系统直流母线电压波动,提升PowerTitan储能系统在光伏波动工况下的稳定性。离散铁氧体桥设计可借鉴至电动汽车无线充电桩产品,优化耦合系数与铁损平衡。双向能量流动控制策略可融入阳光电源构网型GFM控制技术,增强储能系统双向功率调节能力。米级传输距离的绝缘设计经验对高压储能系统(1500V)的安全防护具有参考意义,可提升ESS集成方案的可靠性与安装灵活性。