Look-Back Technique to Generate Multistep Finite State Machines

M. Ramos, G.A. Veloz, R.M.E. Guzman
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Abstract

Nowadays, technologies are attempting to increase systems speed beyond the limits imposed by the capacity of the systems themselves. That is the case of finite state machines where improving the iteration bound is critical for reaching the desired performance. A good solution to improve them is to parallelize the finite state machines in order to improve their speed. In this paper we propose a methodology that makes use of the Z transform, better known as an important tool for discrete time system characterization. The proposed algorithm, starts from the canonical description of the finite state machine and generates the parallel version of the finite state machine with the desired level of parallelism while preserving its original behavior
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多步有限状态机生成技术回顾
如今,技术正试图提高系统的速度,使其超越系统本身的能力所施加的限制。这就是有限状态机的情况,其中改进迭代边界对于达到期望的性能至关重要。改进它们的一个很好的解决方案是并行化有限状态机以提高它们的速度。在本文中,我们提出了一种利用Z变换的方法,Z变换是离散时间系统表征的重要工具。该算法从有限状态机的规范描述出发,在保留其原始行为的同时,生成具有所需并行度的有限状态机的并行版本
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