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Performance evaluation on transmit polarization diversity for implant UWB-IR communications

机译:植入式UWB-IR通信的发射极化分集性能评估

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An ultra wideband impulse radio (UWB-IR) technology is a potential candidate for implant body area networks (BANs), where wireless communications are established between inside and outside of a human body. The UWB-IR technology can accomplish low power consumption and high data rate with an extremely short pulse. However, due to its high frequencies, UWB-IR signals suffer from quite large attenuation in the implant communication link, which makes it difficult to achieve reliable communications. For achieving reliable communication, it is well known that a spatial diversity technique is efficient without any frequency extension. In the related works, several spatial receive diversity techniques for the implant communications have been so far discussed. In contrast, the diversity technique at transmitter side has been rarely discussed because of difficulty of the antenna miniaturization. In this paper, we pay attention to the fact that it is possible to further miniaturize the UWB antenna due to its high frequency, so that, we aim to develop a transmit polarization diversity antenna for implant UWB communications. Then, we investigate the performances of the developed transmit diversity antenna, including the S-parameters and correlation coefficient between each polarization, based on a finite difference time domain (FDTD) method. Finally, we evaluate the bit error rate (BER) performance for the transmit polarization diversity. The computer simulation results demonstrate the feasibility and effectiveness of the transmit diversity for the UWB-IR communications.
机译:超宽带脉冲无线电(UWB-IR)技术是植入人体区域网络(BAN)的潜在候选者,在人体内部和外部之间建立无线通信。 UWB-IR技术可以以极短的脉冲实现低功耗和高数据速率。然而,由于其高频,UWB-IR信号在植入物通信链路中遭受相当大的衰减,这使得难以实现可靠的通信。为了实现可靠的通信,众所周知,空间分集技术是有效的而没有任何频率扩展。在相关的工作中,到目前为止,已经讨论了几种用于植入物通信的空间接收分集技术。相反,由于天线小型化的困难,很少讨论发射机侧的分集技术。在本文中,我们关注这样一个事实,即由于其高频特性,它有可能进一步使UWB天线小型化,因此,我们旨在开发一种用于植入式UWB通信的发射极化分集天线。然后,我们基于有限差分时域(FDTD)方法研究了已开发的发射分集天线的性能,包括S参数和每个极化之间的相关系数。最后,我们评估了传输极化分集的误码率(BER)性能。计算机仿真结果证明了用于UWB-IR通信的发射分集的可行性和有效性。

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