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基于龙格-库塔的弹道微分方程解算的FPGA实现
引用本文:潘艇,杨福彪,朱勇,姚小城.基于龙格-库塔的弹道微分方程解算的FPGA实现[J].计算机测量与控制,2015,23(12):80-80.
作者姓名:潘艇  杨福彪  朱勇  姚小城
作者单位:江苏自动化研究所,江苏自动化研究所,江苏自动化研究所,江苏自动化研究所
摘    要:针对火控计算中求解弹道微分方程组的速度、精确度以及资源配置间的冲突,设计了一种在FPGA硬件平台上实现、基于龙格-库塔的微分方程组求解器。通过在方程组之间以及方程内的计算步骤中采用多通道二级并行的方式实现算法硬件加速。实验结果表明,对于精度要求高、计算复杂度大的微分方程组,FPGA硬件实现的运算性能较传统的软件实现方式加速性能明显。

关 键 词:FPGA  龙格-库塔  并行运算
收稿时间:2015/6/30 0:00:00
修稿时间:2015/7/30 0:00:00

The FPGA Design for the Solution of Ballistic Differential Equation Based on Runge-Kutta
Yang Fubiao,Zhu Yong and Yao Xiaocheng.The FPGA Design for the Solution of Ballistic Differential Equation Based on Runge-Kutta[J].Computer Measurement & Control,2015,23(12):80-80.
Authors:Yang Fubiao  Zhu Yong and Yao Xiaocheng
Affiliation:Jiangsu Automation Research Institute,Jiangsu Automation Research Institute,Jiangsu Automation Research Institute,Jiangsu Automation Research Institute
Abstract:In order to solve the computing problem of the ballistic differential equations: the conflict between the calculating speed, accuracy and the resource consumption, the design put forwards a kind of FPGA hardware differential equation solver based on Runge-Kutta. The design realizes the hardware acceleration by using parallel processing to deal with the data pre-processing and the numerical calculation. It also use dual channel to calculate the internal function result. The experiment shows that, for the equation of higher accuracy and complexity, the FPGA hardware implementation has a better accelerating performance than traditional software implementation.
Keywords:FPGA  Runge-Kutta  Parallel Calculation
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