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CDMA System Design and Capacity Analysis Under Disguised Jamming

机译:伪装干扰下的CDMA系统设计与容量分析

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This paper considers robust code division multiple access (CDMA) system design and capacity analysis under disguised jamming, where the jammer generates a fake signal using the same spreading code, constellation, and pulse shaping filter as that of the authorized signal. Unlike Gaussian jamming, which is destructive only when jamming is dominant, disguised jamming can be devastating even if the jamming power is comparable to the signal power. In this paper, first, we analyze the performance of the conventional CDMA under disguised jamming, and show that due to the symmetricity between the authorized signal and the jamming interference, the receiver cannot really distinguish the authorized signal from jamming, leading to complete communication failure. Second, we propose to combat disguised jamming using secure scrambling. Instead of using conventional scrambling codes, we apply advanced encryption standard to generate the security-enhanced scrambling codes. Theoretical analysis based on the arbitrarily varying channel model shows that the capacity of conventional CDMA without secure scrambling under disguised jamming is actually zero; however, secure scrambling can break the symmetricity between the authorized signal and the jamming interference, and hence ensures positive channel capacity under disguised jamming. Numerical examples are provided to demonstrate the effectiveness of secure scrambling in combating disguised jamming.
机译:本文考虑了伪装干扰下的鲁棒码分多址(CDMA)系统设计和容量分析,其中干扰器使用与授权信号相同的扩频码,星座图和脉冲整形滤波器来生成伪信号。与高斯干扰不同,后者仅在占主导地位时才具有破坏性,即使干扰功率与信号功率相当,伪装干扰也可能是毁灭性的。在本文中,首先,我们分析了传统CDMA在变相干扰下的性能,并表明由于授权信号和干扰干扰之间的对称性,接收机无法真正区分授权信号与干扰,从而导致完全通信失败。其次,我们建议使用安全加扰来消除伪装干扰。代替使用传统的扰码,我们应用高级加密标准来生成增强安全性的扰码。基于任意变化的信道模型的理论分析表明,在伪装干扰下,没有安全加扰的常规CDMA容量实际上为零。但是,安全加扰会破坏授权信号和干扰干扰之间的对称性,从而确保在伪装干扰下具有正的信道容量。提供了数字示例,以演示安全加扰对抗伪装干扰的有效性。

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