VLSI architecture for video-assisted global positioning

A. Utgikar, G. Seetharaman, H. Le
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Abstract

We design and implement an efficient architecture for geometric computation of the global position of an airborne video camera from images of known landmarks. A solution based on this analysis, a robust Hough transform-like method facilitated by a class of CORDIC-structured computations is implemented within the framework of terrain navigation. It empowers aerial surveillance systems to navigate effectively when the global position and inertial navigation sensors are out of order. This is particularly useful when the GPS functionality is disrupted by jamming and other techniques. Our architecture exploits parallelism among independent operations and uses pipelining of critical components for superior performance. Double precision division being computationally expensive is performed minimally. Correlation between data is tapped to reduce complexity of flash ADCs, at the cost of few clock cycles once to initialize Hough voting
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视频辅助全球定位的VLSI架构
我们设计并实现了一种高效的架构,用于从已知地标图像中计算机载摄像机的全局位置。在此基础上,在地形导航的框架内实现了一种鲁棒的类霍夫变换方法,该方法由一类cordic结构计算实现。它使空中监视系统能够在全球定位和惯性导航传感器失灵时有效导航。当GPS功能被干扰和其他技术破坏时,这是特别有用的。我们的架构利用独立操作之间的并行性,并使用关键组件的流水线来实现卓越的性能。双精度除法在计算上的开销是最小的。利用数据之间的相关性来降低闪存adc的复杂性,以初始化霍夫投票的几个时钟周期为代价
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