Department of Electronics, University of Alcalá, Alcalá de Henares, 28805 Madrid, Spain.
Sensors (Basel). 2020 Jan 23;20(3):647. doi: 10.3390/s20030647.
Condition monitoring of high voltage power lines through self-powered sensor systems has become a priority for utilities with the aim of detecting potential problems, enhancing reliability of the power transmission and distribution networks and mitigating the adverse impact of faults. Energy harvesting from the magnetic field generated by the alternating current flowing through high voltage lines can supply the monitoring systems with the required power to operate without relying on hard-wiring or battery-based approaches. However, developing an energy harvester, which scavenges the power from such a limited source of energy, requires detailed design considerations, which may not result in a technically and economically optimal solution. This paper presents an innovative simulation-based strategy to characterize an inductive electromagnetic energy harvester and the power conditioning system. Performance requirements in terms of the harvested power and output voltage range, or level of magnetic core saturation can be imposed. Different harvester configurations, which satisfy the requirements, have been produced by the simulation models. The accuracy and efficiency of this approach is verified with an experimental setup based on an energy harvester, which consists of a Si-steel magnetic core and a power conditioning unit. For the worst-case scenario with a primary current of 5 A, the maximum power extracted by the harvester can be as close as 165 mW, resulting in a power density of 2.79 mW/cm.
通过自供电传感器系统对高压电力线进行状态监测已成为公共事业公司的首要任务,其目的是检测潜在问题,提高输配电网络的可靠性,并减轻故障的不利影响。从通过高压线路的交流电产生的磁场中进行能量采集,可以为监测系统提供所需的操作功率,而无需依赖硬连线或基于电池的方法。然而,开发一种从如此有限的能源中获取能量的能量收集器需要详细的设计考虑因素,这可能不会产生技术和经济上的最佳解决方案。本文提出了一种基于仿真的创新策略,用于对感应电磁能量收集器和功率调节系统进行特性描述。可以施加关于所采集功率和输出电压范围或磁芯饱和程度的性能要求。通过仿真模型产生了满足要求的不同收集器配置。通过基于能量收集器的实验设置验证了该方法的准确性和效率,该能量收集器由硅钢磁芯和功率调节单元组成。对于初级电流为 5A 的最坏情况,收集器可提取的最大功率可接近 165mW,从而产生 2.79mW/cm 的功率密度。