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In-Vehicle Assessment of Human Exposure to EMFs from 25-kW WPT System Based on Near-Field Analysis

机译:基于近场分析的25 kW WPT系统人体暴露于电动势的车载评估

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Wireless power transfer (WPT) technology has the potential to be a convenient and reliable charging method for the light and heavy duty electric vehicles. However, the loosely coupling between the two sides results in strong near-electromagnetic fields (EMFs) around the system, which may have the possibility to impact human safety if the standard limits are exceeded. Therefore, comprehensive tests are necessary to ensure the electromagnetic fields are with in safe limits. Consequently, this paper presents a test methodology for the near-field from a 25 kW WPT system from Momentum Dynamics, which is installed in a heavy duty electric shuttle at the National Renewable Energy Laboratory (NREL). The paper describes in detail the measuring device, test setup and conditions. The misalignments between the two systems' sides are considered during the measurements. Test results for the regions of concern around and inside the bus are presented and compared with the reference levels defined by the international standards, including ICNIRP 2010 and IEEE C95.1. In addition, a finite-element model is developed for the wireless coupler and analyzed at the same conditions as the tests. Comparative analysis is presented between the simulated and experimental results. The measurements at the test points show adherence to the standard limits for the general public and occupational exposure.
机译:无线功率传输(WPT)技术有可能成为轻型和重型电动汽车的一种方便,可靠的充电方法。但是,两侧之间的松散耦合会导致系统周围产生强烈的近电磁场(EMF),如果超出标准限值,则可能会影响人身安全。因此,必须进行全面测试以确保电磁场处于安全范围内。因此,本文介绍了Momentum Dynamics的25 kW WPT系统近场测试方法,该系统安装在国家可再生能源实验室(NREL)的重型电动梭中。本文详细介绍了测量设备,测试设置和条件。在测量过程中会考虑两个系统侧面之间的不对中情况。介绍了总线周围和内部关注区域的测试结果,并将其与国际标准(包括ICNIRP 2010和IEEE C95.1。)定义的参考水平进行了比较。此外,为无线耦合器开发了一个有限元模型,并在与测试相同的条件下进行了分析。在仿真结果和实验结果之间进行了比较分析。测试点的测量结果表明,符合公众和职业暴露的标准限值。

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