标题: 应用于 IEEE 802.15.3c 规格之高面积效率萃式 (224,216) RS 解码器
An Area-Efficient Chase-type (224,216) RS Decoder for IEEE 802.15.3c Applications
作者: 黄裕淳
Huang, Yu-Chun
张锡嘉
Chang, Hsie-Chia
电子研究所
关键字: 里德所罗门;萃式;Reed-Solomon;Chase;IEEE 802.15.3c
公开日期: 2009
摘要: 随着资料传输的频宽不断增加,未压缩高品质影像传输的通讯系统设计成为
了一个有挑战性的主题。根据 IEEE 802.15.3c 规格,在这样的通讯系统必须使
用(224,216)的RS 解码器。讯号在高速传输之下更显脆弱,即使目前有少许可增
加错误更正能力的软性解码的方式例如Guruswami-Sudan 演算法、
Koetter-Vardy 演算法以及低复杂度萃式演算法被提出。这些方法仍然因为高硬
体复杂度以及速度过慢等问题而无法实现。
在论文中,我们提出了一个高速且高面积效率的萃式 (224,216)的RS 解码
器。在错误更正能力上,相对于传统RS 解码器能在BER= −5 10 得到0.5dB 的效能
改善。根据在90nm 制程下的实验结果,所提出的解码器包含27.5k 的运算逻辑
闸。此解码器的工作频率最高为312.5MHz 并且能达到2.41Gb/s 的传输速度。
As the bandwith of data transmission advanced day by day, the communication system
for uncompressed high-definition(HD) video streaming which requires high data rate is
a challenging topic now. According to the IEEE 802.15.3c specification, a RS(224,216)
decoder is specified in the uncompressed HD video streaming system. Since the signals
under high-speed transmission will be more fragile, several techniques such as Guruswami-
Sudan algorithm, Koetter-Vardy algorithm and Low-Complexity Chase algorithm are
carried out to improve error-correcting ability of Reed-Solomon code. However, most of
those method are still not preactical because of huge hardware cost and large critical path
due to high complexity.
In this thesis, we proposed an high-speed and area-efficient Chase-type (224,216) Reed-
Solomon decoder that has a performance gain of 0.5dB at BER = 10−5 compared with
conventional hard-decesion RS decoder. Implemented in UMC CMOS 90nm 1P9M pro-
cess, the proposed decoder can reach 2.41Gb/s at 312.5MHz operation frequency with
27.5K gate count.
URI: http://140.113.39.130/cdrfb3/record/nctu/#GT079611652
http://hdl.handle.net/11536/41777
显示于类别:Thesis


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