减少无线通信中错误传播的集成信号加密机制:性能分析

M. Olama, M. Matalgah, M. Bobrek
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引用次数: 0

摘要

传统的加密技术需要数据包开销,产生处理时间延迟,并且由于无线信道的衰落和干扰导致服务质量严重下降。这些问题大大降低了无线通信中的有效传输数据速率(吞吐量),其中带宽有限的数据速率是主要制约因素。本文对一种安全、提高无线信道吞吐量和误码率的集成信令加密机制进行了性能评估分析。这种机制通过只加密整个传输帧的一小部分来消除本文所述的缺点,而其余部分不受传统加密的约束,而是通过一个信令过程(设计的转换),使用选择用于加密的部分的明文。我们还建议仅在数据的小加密部分上合并纠错编码,以大幅提高整体误码率性能,同时不会显着增加所需的比特率。我们专注于通过进行端到端系统级仿真研究来验证利用汉明和卷积纠错编码的信令加密机制。在标准高斯信道和瑞利信道中,对加密机制的平均误码率和吞吐量进行了评估,并与传统的高级加密标准(AES)进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An integrated signaling-encryption mechanism to reduce error propagation in wireless communications: performance analyses
Traditional encryption techniques require packet overhead, produce processing time delay, and suffer from severe quality of service deterioration due to fades and interference in wireless channels. These issues reduce the effective transmission data rate (throughput) considerably in wireless communications, where data rate with limited bandwidth is the main constraint. In this paper, performance evaluation analyses are conducted for an integrated signaling-encryption mechanism that is secure and enables improved throughput and probability of bit-error in wireless channels. This mechanism eliminates the drawbacks stated herein by encrypting only a small portion of an entire transmitted frame, while the rest is not subject to traditional encryption but goes through a signaling process (designed transformation) with the plaintext of the portion selected for encryption. We also propose to incorporate error correction coding solely on the small encrypted portion of the data to drastically improve the overall bit-error rate performance while not noticeably increasing the required bit-rate. We focus on validating the signaling-encryption mechanism utilizing Hamming and convolutional error correction coding by conducting an end-to-end system-level simulation-based study. The average probability of bit-error and throughput of the encryption mechanism are evaluated over standard Gaussian and Rayleigh fading-type channels and compared to the ones of the conventional advanced encryption standard (AES).
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