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FPGA Design and Implementation of a Real-time FM/PM Pseudo Random Waveform Generation for Noise Radars

机译:FPGA设计和实现实时FM / PM伪随机波形生成噪声雷达

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Noise Radar technology is the general term used to describe radar systems that employ realizations of a given stochastic process as transmit waveforms. With the advances made in hardware as well as the rise of the software defined noise radar concept, waveform design emerges as an important research area related to such systems. Several optimization algorithms have been proposed to generate pseudo-random waveforms with specific desired features, specially with respect to side lobes. Nevertheless, not only modifying random waveforms may compromise their LPI performance, but also the implementation of such algorithms in real time applications may not be feasible. Within this context, this paper analyzes varied design architectures for FM/PM pseudo-noise waveform generation, considering a real-time application. The proposed architectures are verified in a co-simulation environment using Xilinx® System Generator tool and implemented on reconfigurable hardware, i.e., a Xilinx Field Programmable Gate Array (FPGA) is taken into consideration. Timing, resources consumption and the trade offs related to hardware area and performance are then investigated.
机译:噪声雷达技术是用于描述使用给定随机过程的雷达系统作为传输波形的雷达系统的术语。随着硬件的进步以及软件定义的噪声雷达概念的升高,波形设计作为与此类系统相关的重要研究区域。已经提出了几种优化算法以产生具有特定所需特征的伪随机波形,特别是相对于侧瓣。然而,不仅修改随机波形可能会损害其LPI性能,而且还可以在实时应用中实现这种算法可能不可行。在此背景下,考虑到实时应用,本文分析了FM / PM伪噪声波形发电的各种设计架构。使用Xilinx®系统生成器工具在共仿真环境中验证所提出的架构,并在可重新配置的硬件上实现,即,考虑到Xilinx字段可编程门阵列(FPGA)。然后调查时间,资源消费和与硬件区域和性能相关的贸易差异。

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