首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >Digital linear chirp receiver for high chirp rates with high resolution time-of-arrival and time-of-departure estimation
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Digital linear chirp receiver for high chirp rates with high resolution time-of-arrival and time-of-departure estimation

机译:数字线性线性调频接收机,具有高线性调频率,具有高分辨率到达时间和离开时间估计

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The use of chirp signals in modern radar and ranging systems have numerous benefits. They are extensively used to improve signal-to-noise ratio and range resolution. The performance capabilities of these signals are directly related to their time-bandwidth product, i.e., the duration and bandwidth of the pulse. Ultra-wideband chirp signals are further desirable because they span a large bandwidth, making them resistant to narrowband environmental interference. The accurate detection and measurement of high chirp signals is difficult due to the necessity of a high-sampling analog-digital converter, a target measurement platform with high computational power, and a time-of-arrival (TOA) estimator with high temporal resolution. The difficulty of the problem is further compounded with the requirement that no a priori knowledge of the signal, noise, or operating environment is known. This paper presents a practical approach and implementation of a high linear chirp rate receiver and TOA estimator pair capable of detecting and measuring stationary radio frequency pulses as well as linear chirp rates up to 1.18 GHz in 400 ns. The high-resolution TOA algorithm and linear chirp receiver have been prototyped, synthesized, and placed and routed for a Virtex 6 SX475 FPGA.
机译:在现代雷达和测距系统中使用线性调频信号有很多好处。它们被广泛用于改善信噪比和范围分辨率。这些信号的性能与它们的时间-带宽乘积直接相关,即脉冲的持续时间和带宽。进一步希望超宽带线性调频信号,因为它们跨越大带宽,从而使其能够抵抗窄带环境干扰。由于需要高采样模数转换器,具有高计算能力的目标测量平台以及具有高时间分辨率的到达时间(TOA)估计器,因此难以准确检测和测量高线性调频信号。问题的难度进一步增加了对信号,噪声或操作环境的先验知识的了解。本文提出了一种实用的方法和实现,它能够检测和测量固定射频脉冲以及400 ns内高达1.18 GHz的线性线性调频率,并具有高线性线性调频率接收机和TOA估计器对。高分辨率TOA算法和线性线性调频接收器已经原型化,合成,放置并路由用于Virtex 6 SX475 FPGA。

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