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Energy efficient collaborative communications in AWGN and Rayleigh fading channel in wireless sensor networks

机译:无线传感器网络中AWGN和瑞利衰落信道中的节能协作通信

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摘要

Collaborative communication produces high power gain and significantly reduces bit error rate (BER) if both frequency and phase synchronization are achieved. In this paper, a novel collaborative communication system with imperfect phase and frequency synchronization that includes the influence of noise and fading is proposed, modeled, theoretically analyzed, and simulated. Mathematical expressions are derived for the received power as a function of number of collaborative nodes and BER as a function of signal to noise ratio. E_b=N_0. To analyze the energy efficiency of our proposed collaborative communication system, energy consumption of the system is modeled, simulated, and analyzed by considering the parameters of the off-the-shelf products. Analytical and simulation results showed that the proposed system produces significant power gain and reduction in BER in the presence of phase errors, frequency errors, additive white Gaussian noise, and Rayleigh fading. A detailed theoretical analysis and Monte Carlo simulation revealed that the proposed collaborative communication system is an energy efficient communication system that can be implemented in sensor networks, as approximately N (number of collaborative nodes) times less total transmitted power is required than for the single input single output communication for a specifies transmission range.
机译:如果同时实现频率和相位同步,则协作通信可产生高功率增益并显着降低误码率(BER)。本文提出,建模,理论分析和仿真了一种具有不完美相位和频率同步的新型协作通信系统,该系统包括噪声和衰落的影响。对于接收功率,根据协作节点的数量得出数学表达式,对于BER,根据信噪比得出数学表达式。 E_b = N_0。为了分析我们提出的协作通信系统的能效,通过考虑现成产品的参数对系统的能耗进行建模,仿真和分析。分析和仿真结果表明,所提出的系统在存在相位误差,频率误差,加性高斯白噪声和瑞利衰落的情况下,产生了显着的功率增益并降低了BER。详细的理论分析和蒙特卡洛模拟显示,所提出的协作通信系统是一种可以在传感器网络中实现的节能通信系统,因为所需总发射功率约为单输入的N(协作节点数)倍。指定输出范围的单输出通信。

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