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Combining DCQGMP-Based Sparse Decomposition and MPDR Beamformer for Multi-Type Interferences Mitigation for GNSS Receivers

机译:将基于DCQGMP的稀疏分解和MPDR波束形成器相结合以减轻GNSS接收器的多类型干扰

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摘要

In the coexistence of multiple types of interfering signals, the performance of interference suppression methods based on time and frequency domains is degraded seriously, and the technique using an antenna array requires a large enough size and huge hardware costs. To combat multi-type interferences better for GNSS receivers, this paper proposes a cascaded multi-type interferences mitigation method combining improved double chain quantum genetic matching pursuit (DCQGMP)-based sparse decomposition and an MPDR beamformer. The key idea behind the proposed method is that the multiple types of interfering signals can be excised by taking advantage of their sparse features in different domains. In the first stage, the single-tone (multi-tone) and linear chirp interfering signals are canceled by sparse decomposition according to their sparsity in the over-complete dictionary. In order to improve the timeliness of matching pursuit (MP)-based sparse decomposition, a DCQGMP is introduced by combining an improved double chain quantum genetic algorithm (DCQGA) and the MP algorithm, and the DCQGMP algorithm is extended to handle the multi-channel signals according to the correlation among the signals in different channels. In the second stage, the minimum power distortionless response (MPDR) beamformer is utilized to nullify the residuary interferences (e.g., wideband Gaussian noise interferences). Several simulation results show that the proposed method can not only improve the interference mitigation degree of freedom (DoF) of the array antenna, but also effectively deal with the interference arriving from the same direction with the GNSS signal, which can be sparse represented in the over-complete dictionary. Moreover, it does not bring serious distortions into the navigation signal.
机译:在多种类型的干扰信号共存的情况下,基于时域和频域的干扰抑制方法的性能严重下降,并且使用天线阵列的技术需要足够大的尺寸和巨大的硬件成本。为了更好地应对GNSS接收机的多类型干扰,本文提出了一种基于改进的双链量子遗传匹配追踪(DCQGMP)的稀疏分解和MPDR波束形成器的级联多类型干扰缓解方法。所提出的方法背后的关键思想是可以通过利用它们在不同域中的稀疏特征来去除多种类型的干扰信号。在第一阶段,单音(多音)和线性线性调频干扰信号根据稀疏分解在超完备字典中的稀疏性而被抵消。为了提高基于匹配追踪(MP)的稀疏分解的及时性,结合改进的双链量子遗传算法(DCQGA)和MP算法引入了DCQGMP,并扩展了DCQGMP算法以处理多通道根据不同通道中信号之间的相关性来确定信号。在第二阶段,最小功率无失真响应(MPDR)波束形成器用于消除残留干扰(例如,宽带高斯噪声干扰)。若干仿真结果表明,该方法不仅可以提高阵列天线的干扰缓解自由度,而且可以有效地处理与GNSS信号来自同一方向的干扰,该干扰可以在信号源中稀疏表示。字典过于完整。而且,它不会给导航信号带来严重的失真。

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