电力线通信辐射对人体健康的影响

Abatcha Abba Kaga Lagare, Abdourahimoun Daouda, Makinta Boukar
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摘要

智能电网(smart -grids)的出现产生了对传统电网内可靠通信系统的需求。智能电网环境下的通信技术在市场上有多种应用。到目前为止,使用PLC(电力线通信或电力线载波)技术进行通信是这些智能电网运营商的最佳选择,因为它使用已经到位的电缆作为通信链路。不幸的是,由于电网(频率= 50/60 Hz)不是为传输高频信号而设计的,在PLC模式下(100 kHz - 30 MHz),电缆的行为就像天线一样,在附近的环境中发射电磁辐射。本工作为PLC技术电磁辐射对人体健康影响的评价做出了贡献。根据ICNIRP(国际非电离辐射防护委员会),这种类型的评估是基于SAR(比吸收率)和∆T(暴露于辐射时组织温度升高)。PLC电缆辐射SAR和∆T符合icnirp限值(指南)。为了涵盖许多暴露场景,使用解析方法(麦克斯韦方程)和数值方法(用Feko软件模拟)分析了室外plc电缆的辐射与人的头部之间的相互作用。这些分析表明,暴露在室外plc电缆电磁辐射下对人体无害。对于人体头部长期暴露于PLC电缆电磁辐射,在10-5°C(远离ICNIRP限值)下的SAR小于1nW/Kg和∆T。根据Biot-&-Savart定律,给出了PLC电缆电磁辐射SAR的简化表达式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of Power-Line Communication Radiation on Human Health
The advent of smart electrical grids (Smart-grids) has created the need for a reliable communication system within traditional electrical grids. Many technologies are available on the market for communication in smart-grids environment. Communication using PLC (Power-Line Communication or power-line carrier) technology is by far the best choice for operators of these smart-grids, because it uses the electrical cables already in place as a communication link. Unfortunately, since the electrical grid (frequency = 50/60 Hz) was not designed for the transport of high-frequency signals, in PLC mode (100 kHz - 30 MHz) the electrical cables behave like antennas and emit electromagnetic radiation in the nearby environment. This work is a contribution in the evaluation of electromagnetic radiation impact of PLC technology on human health. According to ICNIRP (International Commission for Non-Ionizing Radiation Protection), this type of assessment in done base on SAR (Specific Absorption Rate) and ∆T (tissue temperature raising during exposure to radiation). PLC cables radiation SAR and ∆T are confront with ICNIRP-limits (Guidelines). In order to cover many exposure scenario, interaction between the radiation of an Outdoor-PLC cable and a human head have been analyze using analytical approach (Maxwell equations) and numerical approach (simulation with Feko software). These analyses have demonstrated that exposure to Outdoor-PLC cable electromagnetic radiation is not harmful to human being. For a long-term exposure of human head to PLC cable electromagnetic radiation, The SAR is less than 1nW/Kg and ∆T under 10-5 °C (Far from ICNIRP limits). Analyses have also produce a simplified expression of PLC cable electromagnetic radiation SAR base on Biot-&-Savart law.
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