Hardware reduction for matrix circuit of control Moore automaton

A. Barkalov, L. Titarenko, O. Hebda
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Abstract

The method is proposed for reduction of the area of matrix implementation of the circuit of the Moore finite state machine (FSM). The method is based on optimal state coding and decomposition of a matrix of terms on two sub-matrixes. Thus classes of the pseudoequivalent states are used. Such approach allows to reduce number of lines of the table of transitions of Moore FSM up to this value of the equivalent Mealy FSM. As a result the area of the matrixes forming excitation function of a states memory register is optimized. An example of the proposed method application is given.
控制摩尔自动机矩阵电路的硬件简化
提出了一种减小摩尔有限状态机(FSM)电路矩阵实现面积的方法。该方法基于最优状态编码和项矩阵在两个子矩阵上的分解。因此,使用了伪等效状态的类。这种方法允许将Moore FSM的转换表的行数减少到相当于Mealy FSM的这个值。从而优化了构成状态存储寄存器激励函数的矩阵的面积。最后给出了该方法的应用实例。
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