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Multiple Codes State Assignment and Code Length Reduction for Power Minimization of Finite State Machines

机译:多代码状态分配和代码长度减少,以最大限度地减少有限状态机的功率

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The method of a minimization of the power consumed by the finite state machine (FSM) is discussed in the presented paper. The proposed algorithm uses two performed sequentially methods of equivalent transformations of the FSM, which do not change the function, but the structure of an FSM. One method assigns multiple codes to the internal states of an FSM. Using more than one code gives more opportunities to assign to the neighbor states the codes with lower Hamming distance, which in result lead to decrease a power consumption. The other method reduces the length of the internal state's code using a special model of an FSM, in which the orthogonal state codes are obtained from a concatenation of the parts of the input and output vectors, and the subcode stored in a memory. This approach gives the possibility to reduce the size of the memory used for storing the internal state's code, which leads to reducing the power consumption. Proposed algorithm executes methods starting from the state splitting, followed by the implementation the common architectural model. The experimental results show that the proposed method reduces the power consumption compared to NOVA, JEDI, column based and sequential algorithms.
机译:本文讨论了一种最小化有限状态机(FSM)功耗的方法。所提出的算法使用FSM等效变换的两种顺序执行的方法,它们不会改变功能,但会改变FSM的结构。一种方法将多个代码分配给FSM的内部状态。使用多于一个的代码给了更多的机会来分配具有较低汉明距离的代码给邻居状态,从而导致降低了功耗。另一种方法是使用FSM的特殊模型来减少内部状态代码的长度,在该模型中,正交状态代码是从输入和输出矢量部分的级联以及存储在存储器中的子代码获得的。这种方法提供了减小用于存储内部状态代码的存储器大小的可能性,这导致了功耗的降低。提出的算法从状态分割开始执行方法,然后执行通用体系结构模型。实验结果表明,与NOVA,JEDI,基于列和顺序算法相比,该方法降低了功耗。

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