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Frequency Hopping Signals Tracking and Sorting Based on Dynamic Programming Modulated Wideband Converters

机译:基于动态编程调制宽带转换器的跳频信号跟踪和分类

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摘要

Most of the earlier tracking and network sorting approaches with a high sampling rate for frequency hopping (FH) signals did not adapt to the wideband system during their implementation, whereas the sub-Nyquist based algorithms cannot satisfy the real-time requirement for dealing with the rapid change of sparsity. It is important to improve the compressed sensing (CS) methods for tracking and sorting wideband FH signals. In this paper, a dynamic programming modulated wideband converters (MWC) scheme is proposed. First, considering the wide gap of FH signals, an improved power estimation method is proposed to track the support set in the time domain. Second, to sort multiple signals more effectively, a feedback control algorithm based on dynamic programming is proposed. In the proposed method, the total sampling rate is decreased significantly, and multiple FH signals are separated rapidly without recovery based on the results of tracking and comparative power. Simulations show that the proposed method can track and sort FH signals efficiently and more practically than previous methods.
机译:最早期的跟踪和网络分类的方法具有高采样率跳频(FH)信号的执行期间没有适应宽带系统,而基于子奈奎斯特算法不能满足处理的实时性要求稀疏的快速变化。它来改善用于跟踪和排序宽带FH信号的压缩传感(CS)方法是重要的。在本文中,动态编程调制的宽带提出转换器(MWC)方案。第一,考虑到FH信号的宽的间隙,一种改进的功率消耗估计方法,提出了以跟踪在时域中的支撑集。其次,要按多个信号更有效,基于动态规划反馈控制算法。在所提出的方法中,总采样速率显著下降,和多个FH信号是基于跟踪和比较功率的结果,而不恢复迅速分离。仿真结果表明,该方法能有效地和比以前的方法更实际地跟踪和排序跳频信号。

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