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A microstrip antenna designed for implantable body sensor network

机译:专为植入体传感器网络设计的微带天线

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With the advancement of implantable technology in the sensory world, new possibilities to improve the quality of human life have started to emerge. A wireless implantable body sensor network is a concept that has been studied for over a decade, where multiple different implantable sensors are integrated to create a network. The network relies on wireless links as the mean of communication between the sensor and actuator nodes through challenging medium of human tissues. In this paper, a microstrip antenna was designed to accommodate the constraints incurred by the human tissues environment and to provide a reliable transmission at 402 MHz frequency. A multi-layer human arm was used as the model and the simulation was run with High Frequency Structure Simulator (HFSS) software. Antenna parameters including return loss, gain, radiation pattern, and SAR values were obtained from the simulation as the reference value for future in vitro or in vivo experiments.
机译:随着植入技术在感官世界的进步,提高人类生活质量的新可能性已经开始出现。无线可植入的身体传感器网络是已经过了十年的概念,其中多个不同的可植入传感器集成以创建网络。网络依赖于无线链路作为传感器和致动器节点之间的通信的平均值,通过挑战人体组织的挑战介质。在本文中,设计微带天线以适应人组织环境产生的约束,并在402MHz频率下提供可靠的传输。使用多层人臂作为模型,使用高频结构模拟器(HFSS)软件运行模拟。包括返回损耗,增益,辐射图案和SAR值的天线参数从模拟获得作为未来体外或体内实验的参考值。

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