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Performance analysis of digital cellular radio systems in Nakagami fading and correlated shadowing environment

机译:Nakagami衰落和相关阴影环境中数字蜂窝无线电系统的性能分析

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摘要

The bit error rate (BER) performance of digital cellular radio systems was investigated in a Nakagami (1960) fading, correlated lognormal shadowing and additive white Gaussian noise (AWGN) environment for noncoherent differential phase shift keying (DPSK) modulation. Two models were used to determine the BER; the first one is based on the cumulative power levels of cochannel interferers while the second one is based on instantaneous cochannel interference power. The relative advantages of the two models were presented for various design parameters. The effects of bit energy to noise ratio, frequency reuse distance, cluster size, correlation coefficient, shadow spread, and fading parameter were studied. The BER was observed to be lower in a correlated shadowing environment compared with the uncorrelated case. The near-far effect was studied by assuming that both the desired and interfering mobiles are randomly located in their corresponding cells.
机译:在Nakagami(1960)衰落,相关对数正态阴影和非相干差分相移键控(DPSK)调制的加性高斯白噪声(AWGN)环境中,研究了数字蜂窝无线电系统的误码率(BER)性能。使用两个模型确定误码率。第一个基于同信道干扰源的累积功率电平,而第二个基于瞬时同信道干扰功率。给出了针对各种设计参数的两种模型的相对优势。研究了比特能量与噪声比,频率重用距离,簇大小,相关系数,阴影扩展和衰落参数的影响。与不相关的情况相比,在相关的阴影环境中观察到BER较低。通过假设所需移动台和干扰移动台都随机位于其对应的小区中来研究近距离效应。

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