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Performance Analysis of Control Signal Transmission Technique for Cognitive Radios in Dynamic Spectrum Access Networks

机译:动态频谱接入网中认知无线电控制信号传输技术的性能分析

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When cognitive radio (CR) systems dynamically use the frequency band, a control signal is necessary to indicate which carrier frequencies are currently available in the network. In order to keep efficient spectrum utilization, this control signal also should be transmitted based on the channel conditions. If transmitters dynamically select carrier frequencies, receivers have to receive control signals without knowledge of their carrier frequencies. To enable such transmission and reception, this paper proposes a novel scheme called DCPT (Differential Code Parallel Transmission). With DCPT, receivers can receive low-rate information with no knowledge of the carrier frequencies. The transmitter transmits two signals whose carrier frequencies are spaced by a predefined value. The absolute values of the carrier frequencies can be varied. When the receiver acquires the DCPT signal, it multiplies the signal by a frequency-shifted version of the signal; this yields a DC component that represents the data signal which is then demodulated. The performance was evaluated by means of numerical analysis and computer simulation. We confirmed that DCPT operates successfully even under severe interference if its parameters are appropriately configured.
机译:当认知无线电(CR)系统动态使用该频带时,需要一个控制信号来指示网络中当前可用的载波频率。为了保持有效的频谱利用,还应根据信道条件来发送此控制信号。如果发射机动态选择载波频率,则接收机必须在不知道其载波频率的情况下接收控制信号。为了实现这种传输和接收,本文提出了一种称为DCPT(差分码并行传输)的新颖方案。使用DCPT,接收机可以在不了解载波频率的情况下接收低速率信息。发射机发送两个信号,其载波频率相隔预定值。载波频率的绝对值可以改变。当接收器获取DCPT信号时,它将信号乘以该信号的频移版本。这将产生一个代表数据信号的直流分量,然后将其解调。通过数值分析和计算机仿真来评估性能。我们确认,如果正确配置了DCPT的参数,即使在严重干扰下也能成功运行。

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