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I-DCSK: An Improved Noncoherent Communication System Architecture

机译:I-DCSK:一种改进的非相干通信系统架构

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This paper presents the design and performance analysis of an improved differential chaos-shift keying (I-DCSK) system. Instead of sending reference and data carrier signals in two time slots as in the conventional DCSK scheme, in the improved design, a time-reversal operation is used to generate an orthogonal reference signal to the data carrier signal and then sum up these two sequences into one time slot, prior to transmission. This operation reduces the bit duration to half, which doubles data rate and enhances spectral efficiency. At the receiver, the received signal is correlated to its time-reversed replica and is summed over the bit duration. The new system design proposed in this brief replaces the delay circuit used in conventional DCSK systems by time-reversal operations. Moreover, the theoretical bit-error-rate expressions for additive white Gaussian noise and multipath fading channels are analytically studied and derived. The proposed I-DCSK system is compared with the conventional DCSK and quadrature chaos-shift keying schemes. Finally, to validate accuracy, simulation results are compared with relevant theoretical expressions.
机译:本文介绍了改进的差分混沌键控(I-DCSK)系统的设计和性能分析。在改进的设计中,不是像传统的DCSK方案那样在两个时隙中发送参考信号和数据载波信号,而是使用时间反转操作来生成与数据载波信号正交的参考信号,然后将这两个序列求和为传输前一个时隙。此操作将位持续时间减少到一半,从而使数据速率加倍,并提高了频谱效率。在接收器上,接收到的信号与其时间反向副本相关,并在位持续时间内求和。本文中提出的新系统设计通过时间反转操作代替了常规DCSK系统中使用的延迟电路。此外,还对附加的高斯白噪声和多径衰落信道的理论误码率表达式进行了分析研究和推导。所提出的I-DCSK系统与常规DCSK和正交混沌移位键控方案进行了比较。最后,为了验证准确性,将仿真结果与相关的理论表达式进行了比较。

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