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Frequency Based Design Partitioning to Achieve Higher Throughput in Digital Cross Correlator for Aperture Synthesis Passive MMW Imager

机译:基于频率的设计分区可在孔径综合无源MMW成像仪的数字互相关器中实现更高的吞吐量

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摘要

Digital cross-correlation is central to many applications including but not limited to Digital Image Processing, Satellite Navigation and Remote Sensing. With recent advancements in digital technology, the computational demands of such applications have increased enormously. In this paper we are presenting a high throughput digital cross correlator, capable of processing 1-bit digitized stream, at the rate of up to 2 GHz, simultaneously on 64 channels i.e., approximately 4 Trillion correlation and accumulation operations per second. In order to achieve higher throughput, we have focused on frequency based partitioning of our design and tried to minimize and localize high frequency operations. This correlator is designed for a Passive Millimeter Wave Imager intended for the detection of contraband items concealed on human body. The goals are to increase the system bandwidth, achieve video rate imaging, improve sensitivity and reduce the size. Design methodology is detailed in subsequent sections, elaborating the techniques enabling high throughput. The design is verified for Xilinx Kintex UltraScale device in simulation and the implementation results are given in terms of device utilization and power consumption estimates. Our results show considerable improvements in throughput as compared to our baseline design, while the correlator successfully meets the functional requirements.
机译:数字互相关对于许多应用至关重要,包括但不限于数字图像处理,卫星导航和遥感。随着数字技术的最新发展,这种应用的计算需求已大大增加。在本文中,我们提出了一种高吞吐量的数字互相关器,它能够在64个通道上同时以每秒2 GHz的速率(即每秒约4万亿个相关和累加运算)以高达2 GHz的速率处理1位数字化流。为了实现更高的吞吐量,我们专注于设计的基于频率的划分,并尝试最小化和本地化高频操作。该相关器设计用于无源毫米波成像仪,用于检测隐藏在人体上的违禁品。目标是增加系统带宽,实现视频速率成像,提高灵敏度并减小尺寸。在随后的章节中详细介绍了设计方法,详细阐述了实现高吞吐量的技术。通过仿真验证了Xilinx Kintex UltraScale器件的设计,并根据器件利用率和功耗估算给出了实现结果。我们的结果表明,与基线设计相比,吞吐量有了显着提高,而相关器成功满足了功能要求。

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