Basar Md Rubel, Ahmad Mohd Yazed, Cho Jongman, Ibrahim Fatimah
Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:2263-6. doi: 10.1109/EMBC.2015.7318843.
This paper presents an analysis of H-field generated by a simple solenoid, pair of solenoids, pair of double-layer solenoids, segmented-solenoid, and Helmholtz power transmission coils (PTCs) to power an endoscopic wireless capsule (WC). The H-fields were computed using finite element analysis based on partial differential equations. Three parameters were considered in the analysis: i) the maximum level of H-field (Hmax) to which the patient's body would be exposed, ii) the minimum level of H-field (Hmin) effective for power transmission, and iii) uniformity of H-field. We validated our analysis by comparing the computed data with data measured from a fabricated Helmholtz PTC. This analysis disclosed that at the same excitation power, all the PTCs are able to transfer same amount of minimum usable power since they generated almost equal value of Hmin. The level of electromagnetic exposure and power transfer stability across all the PTCs would vary significantly which is mainly due to the different level of Hmax and H-field uniformity. The segmented solenoid PTC would cause the lowest exposure and this PTC can transfer the maximum amount of power. The Helmholtz PTC would be able to transfer the most stable power with a moderate level of exposure.
本文分析了由简单螺线管、一对螺线管、一对双层螺线管、分段螺线管和亥姆霍兹电力传输线圈(PTC)产生的H场,用于为内窥镜无线胶囊(WC)供电。使用基于偏微分方程的有限元分析来计算H场。分析中考虑了三个参数:i)患者身体将暴露的H场最大水平(Hmax),ii)对电力传输有效的H场最小水平(Hmin),以及iii)H场的均匀性。我们通过将计算数据与从制造的亥姆霍兹PTC测量的数据进行比较来验证我们的分析。该分析表明,在相同的激励功率下,所有PTC能够传输相同数量的最小可用功率,因为它们产生的Hmin值几乎相等。所有PTC的电磁暴露水平和功率传输稳定性会有显著差异,这主要是由于Hmax水平和H场均匀性不同。分段螺线管PTC会导致最低的暴露,并且该PTC能够传输最大量的功率。亥姆霍兹PTC能够以适度的暴露水平传输最稳定的功率。