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DDS-Based Signal-Generation Architecture Comparison for an Imaging Radar at 300 GHz

机译:300 GHz成像雷达基于DDS的信号生成架构比较

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Submillimeter-wave imaging radars for standoff detection require broadband and fast-switch signal-generation architectures in order to achieve a high-range-resolution and near-video-rate imaging system. The signal generation has a strong influence on the radar image quality, primarily due to the transmitted phase noise. Two direct digital synthesis-based architectures for continuous-wave linear-frequency-modulated signal generation have been fabricated and tested for a high-range-resolution imaging radar at 300 GHz for standoff sensing of person-borne concealed threats. In order to select the signal-generation architecture that ensures the proper operation of the imaging radar with a cost-saving objective, three figures of merit have been used: 1) radar image quality; 2) power consumption; and 3) cost. The impact of the signal-generation architectures on the imaging radar indicates that both architectures present a similar radar performance in terms of radar image quality, although the narrowband direct-digital-synthesis/phase-locked loop scheme is a cost-effective solution compared with the broadband direct-digital-synthesis scheme in order to develop an affordable and energy-efficient high-performance preindustrial radar prototype.
机译:用于距离检测的亚毫米波成像雷达需要宽带和快速切换信号生成架构,以实现高范围分辨率和接近视频速率的成像系统。信号产生对雷达图像质量有很大影响,这主要是由于传输的相位噪声引起的。两种用于连续波线性调频信号生成的基于直接数字合成的体系结构已被制造出来,并已在300 GHz的高分辨率成像雷达上进行了测试,以对人为隐藏的威胁进行防区外感测。为了选择能够确保成像雷达正常运行且具有成本节约目的的信号生成架构,已使用了三个指标:1)雷达图像质量; 2)功耗;和3)费用。信号生成架构对成像雷达的影响表明,尽管窄带直接数字合成/锁相环方案是一种经济高效的解决方案,但与雷达图像质量相比,两种架构都具有类似的雷达性能。宽带直接数字合成方案,以开发价格合理且节能高效的高性能工业前雷达原型。

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