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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Multibeam for Joint Communication and Radar Sensing Using Steerable Analog Antenna Arrays
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Multibeam for Joint Communication and Radar Sensing Using Steerable Analog Antenna Arrays

机译:多波束用于可控模拟天线阵列的联合通信和雷达传感

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摘要

Beamforming has a great potential for joint communication and radar sensing (JCAS), which is becoming a demanding feature on many emerging platforms, such as unmanned aerial vehicles and smart cars. Although beamforming has been extensively studied for communication and radar sensing respectively, its application in the joint system is not straightforward due to different beamforming requirements by communication and sensing. In this paper, we propose a novel multibeam framework using steerable analog antenna arrays, which allows seamless integration of communication and sensing. Different to conventional JCAS schemes that support JCAS using a single beam, our framework is based on the key innovation of multibeam technology: providing fixed subbeam for communication and packet-varying scanning subbeam for sensing, simultaneously from a single transmitting array. We provide a system architecture and protocols for the proposed framework, complying well with modern packet communication systems with multicarrier modulation. We also propose low-complexity and effective multibeam design and generation methods, which offer great flexibility in meeting different communication and sensing requirements. We further develop sensing parameter estimation algorithms using conventional digital Fourier transform and one-dimensional compressive sensing techniques, matching well with the multibeam framework. Simulation results are provided and validate the effectiveness of our proposed framework, beamforming design methods, and the sensing algorithms.
机译:波束成形在联合通信和雷达感应(JCAS)方面具有巨大的潜力,在许多新兴平台(例如无人驾驶飞机和智能汽车)上,波束成形正成为一项苛刻的功能。尽管波束成形已分别针对通信和雷达传感进行了广泛研究,但由于通信和传感对波束成形的要求不同,因此在联合系统中的应用并不简单。在本文中,我们提出了一种使用可控模拟天线阵列的新型多波束框架,该框架允许通信和传感的无缝集成。与支持使用单光束JCAS的常规JCAS方案不同,我们的框架基于多光束技术的关键创新:从单个发射阵列同时提供用于通信的固定子光束和用于传感的分组可变扫描子光束。我们为提出的框架提供了一种系统架构和协议,很好地符合了具有多载波调制的现代分组通信系统。我们还提出了低复杂度和有效的多波束设计和生成方法,它们在满足不同的通信和传感要求方面具有极大的灵活性。我们进一步开发了使用常规数字傅里叶变换和一维压缩传感技术的传感参数估计算法,并与多光束框架很好地匹配。提供了仿真结果,并验证了我们提出的框架,波束成形设计方法和传感算法的有效性。

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