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A New Multistatic FMCW Radar Architecture by Over-the-Air Deramping

机译:通过空中除油的新型多静态FMCW雷达架构

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Frequency modulated continuous wave (FMCW) radar is widely adopted solution for low-cost, short to medium range sensing applications. However, a multistatic FMCW architecture suitable for meeting the low-cost requirement has yet to be developed. This paper introduces a new FMCW radar architecture that implements a novel technique of synchronizing nodes in a multistatic system, known as over-the-air deramping (OTAD). The architecture uses a dual-frequency design to simultaneously broadcast an FMCW waveform on a lower frequency channel directly to a receiver as a reference synchronization signal, and a higher frequency channel to illuminate the measurement scene. The target echo is deramped in hardware with the synchronization signal. OTAD allows for low-cost multistatic systems with fine range-resolution, and low peak power and sampling rate requirements. Furthermore, the approach avoids problems with direct signal interference. OTAD is shown to be a compelling solution for low-cost multistatic radar systems through the experimental measurements using a newly developed OTAD radar system.
机译:调频连续波(FMCW)雷达是低成本,短距离至中距离感测应用的广泛采用的解决方案。但是,尚未开发出适合满足低成本要求的多静态FMCW体系结构。本文介绍了一种新的FMCW雷达体系结构,该体系结构实现了一种在多静态系统中同步节点的新颖技术,即空中脱轨(OTAD)。该体系结构使用双频设计,以同时在较低频率信道上将FMCW波形直接广播到接收器作为参考同步信号,而在较高频率信道上则照亮了测量场景。目标回波通过同步信号在硬件中消除。 OTAD允许低成本多静态系统具有良好的范围分辨率,低峰值功率和采样率要求。此外,该方法避免了直接信号干扰的问题。通过使用新开发的OTAD雷达系统进行实验测量,表明OTAD是低成本多基地雷达系统的引人注目的解决方案。

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