首页> 外文会议>International Workshop on Reconfigurable Computing: Architectures and Applications(ARC 2005); 20060301-03; Delft(NL) >Trigonometric Computing Embedded in a Dynamically Reconfigurable CORDIC System-on-Chip
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Trigonometric Computing Embedded in a Dynamically Reconfigurable CORDIC System-on-Chip

机译:嵌入动态可重构CORDIC片上系统中的三角计算

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This work presents the custom-made design of a 32-bit fixed-point trigonometric computer based on the CORDIC (Coordinate Rotation Digital Computer) algorithm and embedded in an AT94K40 system-on-chip device. This platform -composed of a 8-bit MCU that handles the program flow and a dynamically reconfigurable FPGA that synthesizes an evolvable slave coprocessor to speed up the calculus- provides a balanced control-computing architecture to efficiently process functions as sin(z), cos(z), atan(y/x) and sqrt(x~2+y~2). This approach reaches significant area-time optimizations over other traditional software-oriented solutions inspired on powerful stand-alone microprocessors.
机译:这项工作提出了一种基于CORDIC(坐标旋转数字计算机)算法并嵌入AT94K40片上系统设备的32位定点三角计算机的定制设计。该平台由一个处理程序流程的8位MCU和一个动态可重新配置的FPGA组成,该FPGA可合成可进化的从属协处理器以加快演算速度,它提供了一种平衡的控制计算架构,可以高效地处理sin(z),cos (z),atan(y / x)和sqrt(x〜2 + y〜2)。与受强大独立微处理器启发的其他传统的面向软件的解决方案相比,该方法可实现显着的时空优化。

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