首页> 外文会议>IEEE International IOT, Electronics and Mechatronics Conference >Assessment of Electromagnetic Energy Absorption Rate in Hibiscus Flower Model at 947.50 MHz and 1842.50 MHz
【24h】

Assessment of Electromagnetic Energy Absorption Rate in Hibiscus Flower Model at 947.50 MHz and 1842.50 MHz

机译:芙蓉花模型电磁能量吸收率评估为947.50 MHz和1842.50 MHz

获取原文

摘要

Living biological tissues in plants, fruits and flowers possess considerably high permittivity and electrical conductivity over wide microwave frequency spectrum. Plants, being immobile, are continuously exposed to electromagnetic radiation emitted from cell tower antennas. As a consequence, plants are expected to absorb quite a large amount of incident electromagnetic energy over multiple frequency bands. Different global and national regulatory bodies have put limits on maximum permissible electromagnetic exposure to restrict absorption in humans and minimize related health risks. However, electromagnetic energy absorption in plants along with associated physiological and molecular effects has not been considered in these guidelines. Plants, in general, possess higher surface area while compared to humans or other living objects. In particular, flowers own reasonably high surface to volume ratio and consequently dissipate quite high amount of electromagnetic energy in a relatively less tissue mass. Hence, this paper aims at estimating specific absorption rate data for a hibiscus flower model at 947.50 MHz and 1842.50 MHz. Linearly polarized plane waves at those two frequencies impinge on the hibiscus flower model in separate simulations as per the International Commission on Non-Ionizing Radiation Protection guidelines. Maximum local point, averaged over 1g contiguous tissue and whole body averaged specific absorption rate data at those two frequencies are significantly different than the data reported earlier at 2450 MHz - indicating, the nature of dependence of specific absorption rate data on frequency of irradiation, incident field strength and dielectric properties of constituent flower tissue.
机译:在宽的微波频谱中,植物,水果和花的生物组织具有相当高的介电常数和电导率。植物是不动的,连续地暴露于从细胞塔天线发射的电磁辐射。因此,预计植物将在多个频带上吸收大量的入射电磁能量。不同的全球和国家监管机构对最大允许的电磁暴露进行限制,以限制人类吸收,并尽量减少相关的健康风险。然而,在这些指导方针中尚未考虑植物中的电磁能量吸收以及相关的生理和分子效应。通常,植物与人类或其他生物物体相比具有较高的表面积。特别是,花朵具有相当高的高度的体积比,因此在相对较少的组织物质中散发了相当大量的电磁能量。因此,本文旨在估算947.50 MHz和1842.50 MHz的木槿花模型的特定吸收率数据。根据国际非电离辐射防护指南的国际委员会,在这两个频率的线性偏振平面波在芙蓉花模型中撞击。在这两个频率下,超过1g连续组织和整个身体的平均特定吸收率数据的最大局部点与早期报告的数据在2450MHz上报告的数据有显着不同 - 特定吸收率数据的依赖性在辐照频率上,事件构成花组织的场强和介电性质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号