An area effective standard cell based channel decoder LSI for digital satellite TV broadcasting

T. Kamada, T. Fukuoka, Y. Nakai, Y. Nakakura, K. Ueda, K. Ota, T. Shiomi, Y. Fukumoto
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引用次数: 6

Abstract

A new channel decoder LSI, which will be used in digital satellite TV broadcasting set-top boxes, has been designed. This LSI's functions include AD/DA conversion, QPSK demodulation, Viterbi decoding, frame synchronization, convolutional deinterleaving, Reed-Solomon (RS) decoding, and descrambling. We use a new method for Viterbi decoding called the tracking survivor state information (TSSI) method, which not only reduces power consumption, but also solves the problem of increasing memory size. To reduce the size of the RS decoder circuit, we used a three-stage-pipeline structure as well as designed a new architecture to realize the Euclid algorithm. This device has been fabricated in a 0.35 /spl mu/m 3-metal CMOS standard cell-based process and is composed of 670 K transistors. We describe the TSSI method of the Viterbi decoder and the Reed-Solomon decoder's new 3-stage pipeline architecture.
一种用于数字卫星电视广播的基于区域有效标准单元的信道解码器LSI
设计了一种用于数字卫星电视广播机顶盒的新型通道解码器LSI。该LSI的功能包括AD/DA转换、QPSK解调、Viterbi解码、帧同步、卷积去交错、Reed-Solomon (RS)解码和解码器。我们采用了一种新的Viterbi解码方法——跟踪幸存者状态信息(TSSI)方法,不仅降低了功耗,而且解决了内存增加的问题。为了减小RS译码电路的尺寸,我们采用了三级流水线结构,并设计了一种新的架构来实现欧几里得算法。该器件以0.35 /spl mu/m的3金属CMOS标准电池工艺制成,由670 K晶体管组成。我们描述了Viterbi解码器的TSSI方法和Reed-Solomon解码器的新的3级管道架构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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