论文标题
映射可充电电池周围的振荡磁场
Mapping oscillating magnetic fields around rechargeable batteries
论文作者
论文摘要
电池等电源存储设备是现代技术的关键部分。在过去的几十年中,电池的开发和使用加速了,但是只有几种技术可以以非凡的方式从电池电池中收集重要信息。一种广泛使用的技术来研究电池的技术是电阻抗光谱(EIS),该技术提供了有关细胞阻抗如何随施加交流电流频率变化的信息。在Inside-Out MRI(IOMRI)的最新发展的基础上,这里提出了一种技术,该技术产生了来自分布在单元内的交替电流的振荡磁场的空间分辨图。该技术通过使用与封闭式交替的电流同步的MRI脉冲序列来起作用。该方法用电流的电线线圈进行基准测试,并用商业和原型锂离子细胞证明。对于不同的细胞类型,观察到田间的明显变化。
Power storage devices such as batteries are a crucial part of modern technology. The development and use of batteries has accelerated in the past decades, yet there are only a few techniques that allow gathering vital information from battery cells in a nonivasive fashion. A widely used technique to investigate batteries is electrical impedance spectroscopy (EIS), which provides information on how the impedance of a cell changes as a function of the frequency of applied alternating currents. Building on recent developments of inside-out MRI (ioMRI), a technique is presented here which produces spatially-resolved maps of the oscillating magnetic fields originating from the alternating electrical currents distributed within a cell. The technique works by using an MRI pulse sequence synchronized with a gated alternating current applied to the cell terminals. The approach is benchmarked with a current-carrying wire coil, and demonstrated with commercial and prototype lithium-ion cells. Marked changes in the fields are observed for different cell types.