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A New Radio Propagation Model at 2.4 GHz for Wireless Medical Body Sensors in Outdoor Environment

机译:户外环境中无线医用体传感器的2.4 GHz新型无线电传播模型

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This study investigates the effect of antenna height, receive antenna placement on human body, and distance between transmitter and receiver on the loss of wireless signal power in order to develop a wireless propagation model for wireless body sensors. Although many studies looked at the effect of distance, few studies were found that investigated methodically the effect of antenna height and antenna placement on the human body. Transmit antenna heights of 1, 2, and 3 meters, receive antenna heights of 1 and 1.65 meters, "on-body" and "off-body" placements of receive antenna, and a total of 11 distances ranging from 1 to 45 meters are tested in relation to received power in dBm. Multiple regression is used to analyze the data. Significance of a variable is tested by comparing its p-value with alpha, and model fit is assessed using adjusted R~2 and σ of residuals. It is found that an increase in antenna height would increase power-but only for transmit antenna. The receive antenna height has a surprising, opposite effect in the on-body case and an insignificant effect in the off-body case. To formalize the propagation model, coefficient values from multiple regression are incorporated in an extension of the log-distance model to produce a new empirical model for on-body and off-body cases, and the new empirical model could conceivably be utilized to design more reliable wireless links for medical body sensors.
机译:本研究研究了天线高度,接收人体上的天线放置的效果,以及发射器和接收器之间的距离对无线信号功率的丢失,以便为无线体传感器开发无线传播模型。虽然许多研究看着距离的效果,但发现很少有研究,这些研究是在人体上有条不紊地研究了天线高度和天线放置对人体的影响。发射天线高度为1,2和3米,接收1和1.65米的天线高度,“身体”和“偏离身体”放置的接收天线,总共11距离为1到45米在DBM中的接收功率相关测试。多元回归用于分析数据。通过将其P值与α比较来测试变量的意义,并使用调整的R〜2和σ评估模型配合。发现天线高度的增加将增加功率 - 但仅适用于传输天线。接收天线高度在体外情况下具有令人惊讶的,相反的效果以及在衬底外壳中的微不足道的效果。为了形成传播模型,从多元回归的系数值结合在日志距离模型的扩展中,以产生新的身体和偏压案例的新经验模型,并且可以可以想象地利用新的经验模型来设计更多用于医疗机身传感器的可靠无线链路。

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