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Performance analysis of M-ary orthogonal DS system for infrared wireless communications

机译:M元正交DS系统在红外无线通信中的性能分析

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The performance of a direct-sequence spread-spectrum system using M-ary orthogonal modulation under the effect of multipath dispersion is evaluated through theoretical analysis and computer simulations. The performance of the system employing (i) random orthogonal codes and (ii) Walsh codes are investigated in a simulated non-directed line-of-sight infrared channel. An approximation to the bit error probability is given by using a Gaussian approximation for the intersymbol interference due to multipath propagation. The average probability of error as a function of the signal-to-noise ratio is used as the performance criteria. Results show that an M-ary orthogonal DS system is able to combat the effect of multipath dispersion since only small power penalties are incurred while increasing the system spectral efficiency. It is observed that Walsh codes have slightly worse performance than random orthogonal codes in a dispersive infrared channel, and the Gaussian approximation becomes more accurate as the length of the code sequence increases.
机译:通过理论分析和计算机仿真,评估了在多径色散效应下使用M进制正交调制的直接序列扩频系统的性能。在模拟的非定向视距红外信道中研究了使用(i)随机正交码和(ii)Walsh码的系统的性能。通过对由于多径传播而引起的符号间干扰使用高斯近似来给出误码概率的近似。作为信噪比函数的平均错误概率被用作性能标准。结果表明,Mary正交DS系统能够抵抗多径色散的影响,因为在增加系统频谱效率的同时,只产生了很小的功率损失。可以看出,沃尔什码在色散红外信道中的性能比随机正交码稍差,并且随着码序列长度的增加,高斯近似变得更加精确。

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