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首页> 外文期刊>Aerospace >An Implementation of Real-Time Phased Array Radar Fundamental Functions on a DSP-Focused, High-Performance, Embedded Computing Platform
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An Implementation of Real-Time Phased Array Radar Fundamental Functions on a DSP-Focused, High-Performance, Embedded Computing Platform

机译:基于DSP的高性能嵌入式计算平台上实时相控阵雷达基本功能的实现

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This paper investigates the feasibility of a backend design for real-time, multiple-channel processing digital phased array system, particularly for high-performance embedded computing platforms constructed of general purpose digital signal processors. First, we obtained the lab-scale backend performance benchmark from simulating beamforming, pulse compression, and Doppler filtering based on a Micro Telecom Computing Architecture (MTCA) chassis using the Serial RapidIO protocol in backplane communication. Next, a field-scale demonstrator of a multifunctional phased array radar is emulated by using the similar configuration. Interestingly, the performance of a barebones design is compared to that of emerging tools that systematically take advantage of parallelism and multicore capabilities, including the Open Computing Language.
机译:本文研究了实时多通道处理数字相控阵系统后端设计的可行性,特别是对于由通用数字信号处理器构建的高性能嵌入式计算平台。首先,我们通过在背板通信中使用串行RapidIO协议对基于微电信计算架构(MTCA)机箱的波束成形,脉冲压缩和多普勒滤波进行仿真,从而获得了实验室规模的后端性能基准。接下来,通过使用类似的配置模拟多功能相控阵雷达的现场规模演示器。有趣的是,将准系统设计的性能与新兴工具的性能进行了比较,这些新兴工具系统地利用了并行性和多核功能,包括开放计算语言。

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