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The Maximum Processing Gain of the Spreading Signal in Multipath Fading Channels

机译:多径衰落信道中扩频信号的最大处理增益

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Considering the joint algorithm of coherent detection and non-coherent detection, we focus on the maximum processing gain of spreading signal, which is 2-dimensional spread spectrum signal, relative to binary phase shift keying (BPSK) and transmitted in rich scattering multipath fading channels. In this paper, we first investigate the processing gain of spreading signal and analyze its expression. Then, by increasing signal bandwidth or symbol period infinitely, we obtain that the processing gain is bounded, and the maximum processing gain is determined by the channel parameters and the energy-per-bit to noise density ratio (Eb/N0). By analysis and simulation, it is shown that the processing gain is not more than 30dB, when the spreading signal relative to BPSK, with Eb/N0 20dB, the maximum Doppler shift 100Hz, and the negative exponential factor 5E-6, is transmitted in rich scattering multipath fading channels.
机译:考虑到相干检测和非相干检测的联合算法,我们将重点放在扩展信号的最大处理增益上,该信号是二维扩频信号,相对于二进制相移键控(BPSK)并在丰富的散射多径衰落信道中传输。在本文中,我们首先研究扩频信号的处理增益并分析其表达。然后,通过无限地增加信号带宽或符号周期,我们获得了处理增益的界,并且最大处理增益由通道参数和每比特能量的噪声密度比(Eb / N0)确定。通过分析和仿真表明,当Eb / N0为20dB,最大多普勒频移为100Hz,负指数因子为5E-6时,相对于BPSK的扩频信号传输时,处理增益不大于30dB。丰富的散射多径衰落信道。

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