Noise Immunity of Binary Chirp Signals

S. Dvornikov-jr., S. Selivanov, S. Dvornikov
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Abstract

The results of a study of the noise immunity of receiving signals with linear frequency modulation in telecommunication information transmission systems are considered. Analytical expressions for the synthesis of binary signals by linear frequency modulation with control parameters are obtained. The dependence of the structure of linear frequency modulation signals on the shaping parameters has been studied. The optimization problem of finding the maximum value of the Euclidean distance for linear frequency modulation signals of a binary structure has been solved by modeling. Differences have been established in the noise immunity of receiving linear frequency modulation signals in relation to the binary structures of opposite and orthogonal signals. Diagrams of time and spectral fragments of linear frequency modulation signals are presented, explaining the essence of the research results. Graphs are presented for comparative assessment of the noise immunity of receiving binary signals of various structures in terms of the bit error probability as a function of the signal-to-noise ratio in the channel. The essence of correlation processing of signals with a large base is revealed.
二进制啁啾信号的抗噪能力
研究了电信信息传输系统中线性频率调制接收信号的抗噪声能力。获得了线性频率调制二进制信号合成的分析表达式和控制参数。研究了线性频率调制信号结构对整形参数的依赖性。通过建模解决了寻找二进制结构线性频率调制信号欧氏距离最大值的优化问题。确定了接收线性频率调制信号的抗噪声能力与相反和正交信号的二进制结构之间的差异。图中展示了线性频率调制信号的时间片段和频谱片段,解释了研究成果的本质。还给出了图表,用于比较评估接收不同结构二进制信号的抗噪能力,即误码概率与信道信噪比的函数关系。揭示了大基数信号相关处理的本质。
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