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首页> 外文期刊>Selected Topics in Signal Processing, IEEE Journal of >Signal Design for Context Aware Distributed Radar Sensing Networks Based on Wavelets
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Signal Design for Context Aware Distributed Radar Sensing Networks Based on Wavelets

机译:基于小波的上下文感知分布式雷达传感网络信号设计

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In the field of radar sensing, a paradigm shift is taking place from the traditional radar system to distributed sensing/radar networks. Comparing with the single radar system distributed radar networks have a superior performance in detection and estimation of parameters of target. They also enhance the imaging and classification performance of sensing systems. As in distributed radar networks several radars operate at the same frequency band in a network and share the spectrum they may interfere each other, and accordingly the radar-to-radar interference becomes a major problem to be addressed. Therefore, the context aware design of radar signals for radar sensing networks to cope with the interference is pronounced. On the other hand Wavelet packet transform has recently emerged as a novel signal design technique with attractions such as good time-frequency resolution, low sidelobes, and the reconfigurability capability. The wavelet approach is advantageous for the signal design of cognitive radar networks mainly because of its flexibility, lower sensitivity to distortion and interference, and better utilization of spectrum. For minimum interference to the adjacent radar bands, the wavelets should be maximally frequency selective. Commonly known wavelets are not frequency selective in nature and hence result in poor spectrum sharing performance. To alleviate this problem, we design a family of wavelets that are maximally frequency selective in nature. To this end, the design constraints are first enlisted. Then the problem, originally non-convex, is reformulated into a convex optimization problem and solved using Semi Definite Programming tools. Through simulation studies the benefits of the newly designed wavelets for a distributed radar sensing network are demonstrated.
机译:在雷达传感领域,正在发生从传统雷达系统到分布式传感/雷达网络的范例转变。与单雷达系统相比,分布式雷达网络在目标参数的检测和估计方面具有优越的性能。它们还增强了传感系统的成像和分类性能。像在分布式雷达网络中一样,几个雷达在网络中的相同频带下运行并共享它们可能互相干扰的频谱,因此,雷达对雷达的干扰成为要解决的主要问题。因此,用于雷达感测网络以应对干扰的雷达信号的情境感知设计是显而易见的。另一方面,小波包变换最近作为一种新颖的信号设计技术出现,具有吸引人的特性,例如良好的时频分辨率,低旁瓣和可重构性。小波方法对于认知雷达网络的信号设计是有利的,主要是因为其灵活性,对失真和干扰的较低敏感性以及对频谱的更好利用。为了使对相邻雷达频带的干扰最小,小波应具有最大的频率选择性。众所周知的小波本质上不是频率选择性的,因此会导致不良的频谱共享性能。为了减轻这个问题,我们设计了一系列在本质上具有最大频率选择性的小波。为此,首先要考虑设计约束。然后,将原本为非凸的问题重新构造为凸优化问题,并使用半定规划工具进行求解。通过仿真研究,证明了新设计的小波对分布式雷达传感网络的好处。

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