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Antenna transfer function evaluation scheme for ultra wideband medical applications

机译:超宽带医疗应用的天线传递函数评估方案

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Antennas which are used to transmit and receive UWB signals must be able to accomodate its large bandwidth. Moreover, the signals should not be distorted too much when they pass through the antennas. Therefore, the transfer function of antennas should be known for the performance evaluation. Conventionally, the authors measure the transfer function of the antenna by measuring the transmission coefficient between the transmit and the receive antenna, assuming that the transmit and receive antennas are identical. In this presentation, a more accurate three-antenna method is introduced so that the transfer function of each individual antenna can be measured. By using this method, biconical antennas are tested. The results show that these transfer functions are close to each other and that the antenna can be used for UWB meadical application (UWB-MA). Friis' transmission formula in complex form to treat the UWB signals to take into account the waveform distortion due to the frequency characteristics of the antennas [1], [7]. It is noted that Friis' transmission formula is applicable only in the far field region. In wireless meadical environments, however, the distance may not satisfy the far field condition. In this paper, we discusses the antenna evaluation of the transmission properties in Fresnel region.
机译:用于发送和接收UWB信号的天线必须能够适应其大带宽。此外,信号通过天线时不应失真太大。因此,应该知道天线的传递函数以进行性能评估。传统上,作者假设发射天线和接收天线相同,通过测量发射天线和接收天线之间的传输系数来测量天线的传递函数。在本演示中,介绍了一种更精确的三天线方法,以便可以测量每个天线的传递函数。通过使用此方法,测试了双锥天线。结果表明,这些传递函数彼此接近,并且该天线可用于UWB医疗应用(UWB-MA)。 Friis的传输公式以复杂形式处理UWB信号,以考虑由于天线[1],[7]的频率特性引起的波形失真。注意,弗里斯的传输公式仅适用于远场区域。但是,在无线医疗环境中,距离可能无法满足远场条件。在本文中,我们讨论了菲涅耳区域传输特性的天线评估。

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