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首页> 外文期刊>International journal of reconfigurable computing >FPGA Implementation of an Improved Reconfigurable FSMIM Architecture Using Logarithmic Barrier Function Based Gradient Descent Approach
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FPGA Implementation of an Improved Reconfigurable FSMIM Architecture Using Logarithmic Barrier Function Based Gradient Descent Approach

机译:FPGA使用基于对数屏障函数的梯度血压序列方法实现改进的可重构FSMIM架构

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Recently, the Reconfigurable FSM has drawn the attention of the researchers for multistage signal processing applications. The optimal synthesis of Reconfigurable finite state machine with input multiplexing (Reconfigurable FSMIM) architecture is done by the iterative greedy heuristic based Hungarian algorithm (IGHA). The major problem concerning IGHA is the disintegration of a state encoding technique. This paper proposes the integration of IGHA with the state assignment using logarithmic barrier function based gradient descent approach to reduce the hardware consumption of Reconfigurable FSMIM. Experiments have been performed using MCNC FSM benchmarks which illustrate a significant area and speed improvement over other architectures during field programmable gate array (FPGA) implementation.
机译:最近,可重构的FSM引起了研究人员对多级信号处理应用的注意。具有输入复用(可重新配置FSMIM)架构的可重新配置有限状态机的最佳合成是由迭代贪婪启发式匈牙利算法(Igha)完成的。关于IGHA的主要问题是状态编码技术的解体。本文提出了使用基于对数屏障函数的梯度滴定方法对状态分配的集成,以减少可重新配置FSMIM的硬件消耗。已经使用MCNC FSM基准进行了实验,该基准是在现场可编程门阵列(FPGA)实现期间的其他架构上的显着面积和速度改进。

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