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Statistical Analysis of Interference for Nanoscale Electromechanical Wireless Communication at VHF-Band

机译:在VHF频段进行纳米级机电无线通信干扰的统计分析

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Nanoscale electromechanical wireless communication with on-off keying in the very high frequency (VHF) band (30–300 MHz) is studied for a receiver using a carbon nanotube (CNT). Previous studies on this topic have only considered continuous wave (CW) on-off keying which suffers from spectral widening due to sharp changes in the signal. Effects of the inter-symbol interference (ISI), the co-channel interference, and the adjacent channel interference on the received signal statistics have not been analyzed. The rise- and fall-times associated with the filtering of the incoming signal by the mechanical frequency response of the receiver’s CNT have also been ignored. In this paper, Fourier-series based modeling and statistical analysis of decision variables are performed. The results and modeling in this study enable performance evaluation of CNT based receivers with an arbitrary number of interfering signals with arbitrary pulse shapes, and fully incorporates the transient signal components. Received signal statistics under interference are derived using the developed model. Numerical results are presented for Hanning pulse and trapezoidal pulse (which includes rectangular pulses corresponding to CW as a special case). The required guard intervals between pulses to mitigate ISI, required frequency separation between channels, and required spatial separation of co-channel networks (frequency reuse distance) are shown. These results show that large frequency reuse distance is required, limiting efficient spectrum utilization. However, the ISI and adjacent channel interference can be controlled more easily with a proper selection of parameters.
机译:对于使用碳纳米管(CNT)的接收器,研究了在甚高频(VHF)频带(30–300 MHz)中具有开关键控的纳米级机电无线通信。以前对此主题的研究仅考虑了连续波(CW)的开关键控,由于信号的急剧变化而使频谱变宽。尚未分析符号间干扰(ISI),同频道干扰和相邻频道干扰对接收信号统计的影响。与接收器CNT的机械频率响应对输入信号进行滤波相关的上升和下降时间也已被忽略。在本文中,进行了基于傅立叶级数的建模和决策变量的统计分析。这项研究中的结果和建模能够评估具有任意数量脉冲形状的任意数量干扰信号的基于CNT的接收器的性能,并充分吸收瞬态信号分量。使用开发的模型可以得出干扰下的接收信号统计信息。给出了汉宁脉冲和梯形脉冲(特殊情况下包括与CW对应的矩形脉冲)的数值结果。显示了缓解ISI的脉冲之间所需的保护间隔,通道之间所需的频率间隔以及同频道网络所需的空间间隔(频率复用距离)。这些结果表明,需要较大的频率复用距离,从而限制了频谱的有效利用。但是,通过适当选择参数,可以更轻松地控制ISI和相邻信道干扰。

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