Han Peng;Hongfei Xiao;Qingqing Nie;Chunyan Zang;Yong Kang
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引用次数: 0
摘要
本文提出了一种高功率密度非侵入式磁场能量收集器(MEH)和双输出功率管理系统,旨在为高压直流 IGBT 换流阀提供广泛分布的在线监测设备。由于 IGBT 设备的周期性开关,IGBT 换流阀含有足够千赫的磁场。高频 MEH 具有功率密度高的优点。我们提出了一种改进的 I 形磁芯,研究了等效磁导率,并为磁通汇聚提供了工程实用设计指导。此外,还提出了一种宽输入范围双输出功率管理电路,以适应宽磁强变化。为了更好地利用采集到的能量,采用了升压能量转换路径和降压-升压能量转换路径相结合的双能量流策略。PCB 平面线圈和基于 PCB 的电源管理系统封装在 I 型磁芯内,以消除对低功率电路的电磁干扰。在 1500 Hz 时,磁通密度幅值为 500 \mu\mathrm{T}$ 的情况下,拟议 MEH 的功率密度达到 1.89 mW/cm3。升压路径在充电过程中的最大效率达到 94.1%,降压-升压路径在从 4.0 V 到 0.3 V 的放电过程中的平均效率为 68.0%。
A Wide Range Dual-Output Power Management Circuit for I-Shaped High Frequency Magnetic Field Energy Harvester
A high power density non-intrusive magnetic field energy harvester (MEH) and dual-output power management system are proposed in this paper, targeting at widely distributed online monitoring devices for HVDC IGBT converter valves. IGBT converter valves contain sufficient kHz magnetic field due to the periodic switching of IBGT devices. High frequency MEH has the advantage of high power density. An improved I-shaped core is proposed with equivalent permeability studied and engineering practical design guidance for magnetic flux convergence. Furthermore, a wide input range dual-output power management circuit is proposed for wide magnetic intensity variations. A dual energy flow strategy is adopted with combined boost energy conversion path and buck-boost energy conversion path for better utilization of harvested energy. PCB planar coils and PCB based power management system are packaged inside the I-core to eliminate the electromagnetic interference on the low power circuit. The power density of the proposed MEH reaches to 1.89 mW/cm
3
under magnetic flux density amplitude of
$500\ \mu\mathrm{T}$
at 1500 Hz. The maximum efficiency of the boost path in the charging process reaches to 94.1% and the average efficiency for buck-boost path in the discharging process from 4.0 V to 0.3 V is 68.0%.