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Performance analysis of both hybrid and frequency-hopped phase-coherent spread-spectrum systems. I. A hybrid DS/FH system

机译:混合和跳频相位相干扩频系统的性能分析。一,混合DS / FH系统

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The authors present and analyze a model for both hybrid and frequency-hopped spread-spectrum systems in which a fully digital coherent receiver is used to demodulate the data. A receiver for a hybrid DS/FH (direct-sequence/frequency-hopped) system using a digital delay-lock loop is considered. In the absence of frequency uncertainty, it is shown that the tracking error can be modeled as an ergodic Markov chain with a finite-state set, and the probability density function of the steady-state tracking error is evaluated. When there is a frequency uncertainty, the dynamics of the resulting nonstationary phase error can be obtained, and an expression to evaluate the probability distribution of the first time at which the phase error hits predetermined boundary values is derived. Bit error rate performance is determined in the presence of both additive white Gaussian noise and various types of interference, and the performance is compared to that of noncoherent FSK systems.
机译:作者介绍并分析了混合和跳频扩频系统的模型,其中使用了全数字相干接收机来解调数据。考虑了使用数字延迟锁定环的混合DS / FH(直接序列/跳频)系统的接收器。在没有频率不确定性的情况下,表明可以将跟踪误差建模为具有有限状态集的遍历马尔可夫链,并评估稳态跟踪误差的概率密度函数。当存在频率不确定性时,可以获得所获得的非平稳相位误差的动态,并得出一个表达式,用于评估相位误差达到预定边界值的第一次时间的概率分布。在存在加性高斯白噪声和各种类型干扰的情况下确定误码率性能,并将该性能与非相干FSK系统的性能进行比较。

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