人脑电磁辐射比吸收率的评价——微带贴片天线

P. R. A. Jenshiya, K. M. Kumar, H. Fathima
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引用次数: 1

摘要

本文通过设计矩形微带贴片天线来评估人体头部的比吸收率。天线是一种将电信号转换为电磁波并辐射到太空的换能器。天线的性能是通过其参数来测量的,即带宽、增益、回波损耗等。有几种类型的天线可用,但微带贴片天线由于其低轮廓、轻重量、低成本、馈线灵活性、多功能性、易于制造等优点而被广泛用于许多应用,其主要缺点是带宽窄、增益低和回波损耗高。为了克服这些缺点,使用FR-4材料。比吸收率(SAR)是人体在进入电磁场时吸收的一定量辐射的测量值。它被定义为每质量组织吸收的功率,单位为瓦特每公斤。SAR通常在整个身体或小样本体积(通常为1g或10g组织)上取平均值。为了评估天线性能,计算了所提出天线的增益、VSWR和回波损耗,所提出天线在10.846GHz时提供了4.43dB的增益峰值。所提出天线还提供了0.00109W/Kg的SAR值。根据IEEE标准,对1g组织进行了评估。使用CST(计算机模拟技术)微波工作室工具设计了人头模型和所提出的天线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EVALUATION OF SPECIFIC ABSORPTION RATE OF ELECTROMAGNETIC RADIATION ON HUMAN BRAIN - MICROSTRIP PATCH ANTENNA
This paper presents the evaluation of specific absorption rate for human head by designing rectangular shaped microstrip patch antenna. An antenna is a transducer that converts electrical signals into EM waves and radiates into space. The performance of an antenna is measured by its parameters namely bandwidth, gain, return loss etc. There are several types of antennas available but the microstrip patch antennas are widely used for many applications because of its low profile, light weight, low cost, feed-line flexibility, versatility, ease of fabrication etc. Even though it has several advantages, it suffers from major drawbacks namely narrow bandwidth, low gain and high return loss. In order to overcome these drawbacks, FR-4 materials are used. Specific absorption rate (SAR) is a measurement of certain amount of radiation absorbed by human body while entering into an electromagnetic field. It is defined as the power absorbed per mass of tissue and has units of a watt per kilogram. SAR is typically averaged either over the complete body or over a small sample volume (typically 1g or 10g of tissue). For evaluating the antenna performance, gain, VSWR and the return loss were calculated for the proposed antenna and the proposed antenna provides the peak the gain of 4.43dB at 10.846GHz. The proposed antenna also provides the SAR value of 0.00109W/Kg is evaluated for 1g of tissue as per the IEEE standard. The human head model and the proposed antennas are designed using CST (Computer Simulation Technology) microwave studio tool.
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