首页> 外文期刊>IEEE Journal of Solid-State Circuits >An area-efficient topology for VLSI implementation of Viterbi decoders and other shuffle-exchange type structures
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An area-efficient topology for VLSI implementation of Viterbi decoders and other shuffle-exchange type structures

机译:适用于Viterbi解码器和其他随机交换类型结构的VLSI实现的区域有效拓扑

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摘要

A topology for single-chip implementation of computing structures based on shuffle-exchange (SE)-type interconnection networks is presented. The topology is suited for structures with a small number of processing elements (i.e. 32-128) whose area cannot be neglected compared to the area required for interconnection. The processing elements are implemented in pairs that are connected to form a ring. In this way three-quarters of the interconnections are between neighbors. The ring structure is laid out in two columns and the interconnection of nonneighbors is routed in the channel between the columns. The topology has been used in a VLSI implementation of the add-compare-select (ACS) module of a fully parallel K=7, R=1/2 Viterbi decoder. Both the floor-planning issues and some of the important algorithm and circuit-level aspects of this design are discussed. The chip has been designed and fabricated in a 2- mu m CMOS process using MOSIS-like simplified design rules. The chip operates at speeds up to 19 MHz under worst-case conditions (V/sub DD/=4.75 V and T/sub A/=70 degrees C). The core of the chip (excluding pad cells) is 7.8*5.1 mm/sup 2/ and contains approximately 50000 transistors. The interconnection network occupies 32% of the area.
机译:提出了一种用于基于洗牌交换(SE)型互连网络的计算结构的单芯片实现的拓扑。该拓扑结构适合于具有少量处理元件(即32-128)的结构,与互连所需的面积相比,这些元件的面积不可忽略。处理元件成对实现,成对连接,形成一个环。这样,四分之三的互连都在邻居之间。环形结构分为两列,并且不相邻的互连在各列之间的通道中进行布线。该拓扑已用于完全并行的K = 7,R = 1/2维特比解码器的加比较选择(ACS)模块的VLSI实现中。讨论了布局规划问题以及该设计的一些重要算法和电路级方面。该芯片采用类似于MOSIS的简化设计规则,以2微米CMOS工艺进行设计和制造。在最坏情况下(V / sub DD / = 4.75 V和T / sub A / = 70摄氏度),该芯片的运行速度高达19 MHz。芯片的核心(不包括焊盘单元)为7.8 * 5.1 mm / sup 2 /,包含大约50000个晶体管。互连网络占32%的面积。

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