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通过交叉开关实现周期内无间隙磁芯去饱和以最大化磁能收集
Intracycle Gapless Core Desaturation via Crisscross Switches for Maximal Magnetic Energy Harvesting
| 作者 | Min Gao · Lifang Yi · Jinyeong Moon |
| 期刊 | IEEE Transactions on Industrial Electronics |
| 出版日期 | 2024年8月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 SiC器件 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电流互感器 磁能收集 去饱和策略 负载电压 能量收集水平 |
语言:
中文摘要
基于电流互感器(CT)的磁能收集技术利用交流电流产生的磁场获取能量,在能量水平与可预测性方面优于其他环境能量收集方法,适用于为嵌入式系统、传感器节点、物联网(IoT)和信息物理系统(CPS)等低功耗设备供电。研究表明,当磁芯适度饱和时能量收集效率最高,但完全饱和后电能传输即终止。本文提出一种新颖的去饱和策略,采用四只双向开关构成交叉结构,动态反转磁芯电压方向,避免深度饱和,实现周期内无间隙能量收集。通过仿真与实验验证,所提方法使采集能量提升逾六倍,并展现出能量收集量随初级电流呈二次增长的独特特性,显著优于传统线性关系方法,有利于在强磁场下构建高能量密度收集器。
English Abstract
Current-transformer-based (CT-based) magnetic energy harvesting (EH) extracts energy from ac current-induced magnetic fields, outperforming other ambient EH methods in harvested energy level and predictability. As a result, it emerges as a suitable power supply for self-powering low-power devices like embedded systems, sensor nodes, Internet-of-Things (IoT), and cyber-physical systems (CPS). Prior studies indicated that optimal EH occurs when the magnetic core operates in a suitably saturated state as the magnetically stored energy in a physical core volume increases as the core approaches saturation. However, the actual power transfer electrically ceases once the core reaches full saturation and no current circulates through loads. This article introduces an innovative desaturation strategy, using four bidirectional switches in a crisscross pattern to alter the core voltage direction and prevent magnetic saturation, to enhance EH level. This study also examines the impact of various factors such as load voltage, the count of EH windows, and primary current on the harvested energy, aiming to find the optimal load voltage for maximum energy. Through circuit simulations and experiments, the proposed method shows the harvested energy is significantly increased, exceeding six times the output of basic systems relying on passive rectifiers. Moreover, our new method demonstrates distinctive EH traits, wherein energy extraction quadratically increases with the primary current, unlike conventional methods where energy extraction scales linearly with the primary current. This advantage allows a significantly denser energy harvester to be built under higher magnetic field configurations.
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SunView 深度解读
该磁能收集技术对阳光电源储能与光伏产品线具有重要应用价值。在ST系列储能变流器和SG光伏逆变器中,可利用母线电流或功率回路的交流磁场实现辅助供电,为传感器节点、通信模块及iSolarCloud云平台的边缘采集设备提供自供能方案,降低辅助电源设计复杂度。所提交叉开关去饱和策略与阳光电源在SiC双向开关的应用经验高度契合,可集成于PowerTitan大型储能系统的智能监测单元,实现能量收集量随电流二次增长特性,在大功率场景下显著提升能量密度。该技术还可应用于充电桩的无线传感器供电,增强智能诊断与预测性维护能力,推动产品向免维护、高可靠方向发展。