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Adaptive Biorthogonal Local Discrete Cosine Transform for Interference Excision in Direct Sequence Spread Spectrum Communications

机译:直接序列扩频通信中干扰消除的自适应双正交局部离散余弦变换

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摘要

A novel time-frequency domain interference excision technique is proposed. The technique is based on adaptive biorthogonal local discrete cosine transform (BLDCT). It uses a redundant library of biorthogonal local discrete cosine bases and an efficient concave cost function to match the transform basis to the interfering signal. The main advantage of the algorithm over conventional transform domain excision algorithms is that the basis functions are not fixed but can be adapted to the time-frequency structure of the interfering signal. It is well suited to transform domain compression and suppression of various types of interference. Compared to the discrete wavelet transform (DWT) that provides logarithmic division of the frequency bands, the adaptive BLDCT can provide more flexible frequency resolution. Thus it is more insensitive to variations of jamming frequency. Simulation results demonstrate the improved bit error rate (BER) performance and the increased robustness of the receiver.
机译:提出了一种新的时频域干扰去除技术。该技术基于自适应双正交局部离散余弦变换(BLDCT)。它使用双正交局部离散余弦基的冗余库和有效的凹成本函数将变换基础与干扰信号进行匹配。与传统的变换域切除算法相比,该算法的主要优点是基本函数不固定,但可以适应干扰信号的时频结构。它非常适合于变换域压缩和各种类型干扰的抑制。与提供频带的对数划分的离散小波变换(DWT)相比,自适应BLDCT可以提供更灵活的频率分辨率。因此,它对干扰频率的变化更加不敏感。仿真结果证明了改善的误码率(BER)性能和增强的接收机鲁棒性。

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