• Title/Summary/Keyword: Reed-Solomon(RS)

Search Result 126, Processing Time 0.02 seconds

A Design of Modified Euclidean Algorithm using Finite State Machine (FSM을 이용한 수정된 유클리드 알고리즘 설계)

  • Kang, Sung-Jin
    • Journal of the Korea Academia-Industrial cooperation Society
    • /
    • v.11 no.6
    • /
    • pp.2202-2206
    • /
    • 2010
  • In this paper, an architecture for modified Euclidean(ME) algorithm is proposed, which is using finite-state machine(FSM) instead of degree computation. Since the proposed architecture does not have degree computation circuits, it is possible to reduce the hardware complexity of RS(Reed-Solomon) decoder, so that a very high-speed RS decoder can be implemented. RS(255,239) decoder with the proposed architecture is implemented using Verilog-HDL and requires about 13% fewer gate counts than conventional one.

VLSI Design of Reed-Solomon Decoder over GF($2^8$) with Extreme Use of Resource Sharing (하드웨어 공유 극대화에 의한 GF($2^8$) Reed-Solomon Decoder의 VLSI설계)

  • 이주태;이승우;조중휘
    • Journal of the Korean Institute of Telematics and Electronics C
    • /
    • v.36C no.3
    • /
    • pp.8-16
    • /
    • 1999
  • This paper describes a VLSI design of Reed-Solomon(RS) decoder using the modified Euclid algorithm, with the main theme focused on the $\textit{GF}(2^8)$. To get area-efficient design, a number of new architectures have been devised with maximal register and Euclidean ALU unit sharing. One ALU is shared to replace 18 ALUs which computes an error locator polynomial and an error evaluation polynomial. Also, 18 registers are shared to replace 24 registers which stores coefficients of those polynomials. The validity and efficiency of the proposed architecture have been verified by simulation and by FLEX$^TM$ FPGA implementation in hardware description language VHDL. The proposed Reed-Solomon decoder, which has the capability of decoding RS(208,192,17) and RS(182,172,11) for Digital Versatile Disc(DVD), has been designed by using O.6$\mu\textrm{m}$ CMOS TLM Compass$^TM$ technology library, which contains totally 17k gates with a core area of 2.299$\times$2.284 (5.25$\textrm{mm}^2$). The chip can run at 20MHz while the DVD requirement is 3.74MHz.

  • PDF

Design of DSP Instructions and their Hardware Architecture for Reed-Solomon Codecs (Reed-Solomon 부호화/복호화를 위한 DSP 명령어 및 하드웨어 설계)

  • 이재성;선우명훈
    • The Journal of Korean Institute of Communications and Information Sciences
    • /
    • v.28 no.6A
    • /
    • pp.405-413
    • /
    • 2003
  • This paper presents new DSP (Digital Signal Processor) instructions and their hardware architecture to efficiently implement RS (Reed-Solomon) codecs, which is one of the most widely used FEC (Forward Error Control) algorithms. The proposed DSP architecture can implement various primitive polynomials by program, and thus, hardwired codecs can be replaced. The new instructions and their hardware architecture perform GF (Galois Field) operations using the proposed GF multiplier and adder. Therefore, the proposed DSP architecture can significantly reduce the number of clock cycles compared with existing DSP chips. It can perform RS decoding rate of up to 228.1 Mbps on 130MHz DSP chips.

Design of a High Speed and Parallel Reed-Solomon Decoder Using a Systolic Array (시스톨릭 어레이를 이용한 고속 병렬처리 Reed-Solomon 복호기 설계)

  • 강진용;선우명훈
    • Proceedings of the IEEK Conference
    • /
    • 2001.09a
    • /
    • pp.245-248
    • /
    • 2001
  • 본 논문에서는 연집 오류(burst error)에 우수한 정정 능력을 보이는 고속 RS(Reed-Solomon) 복호기를 제안한다. 제안된 RS 복호기는 RS(n, k, t); (37 < n ≤ 255, 21 < k ≤ 239, t = 8)의 사양을 지원하며 수정 유클리드 알고리즘(modified Euclid´s algorithm)을 이용한 시스톨릭 어레이(systolic array) 방식의 병렬처리 구조로 설계되었다. 고속 RS 복호기의 효율적인 VSLI 설계를 위하여 새로운 방식의 수정 유클리드 알고리즘 연간 회로를 제안한다. 제안된 수정 유클리드 알고리즘 회로는 2t + 1의 연산 지연 시간을 갖으며 기존 구조의 연산 지연 시간인 3t + 37에 비하여 t = 8 인 경우 약 72%의 연산 지연이 감소하였다. 제안된 구조를 VHDL을 이용하여 설계하였으며 SAMSUNG 0.5㎛(KG80) 라이브러리를 이용하여 논리 합성과 타이밍 검증을 수행하였다. 합성된 RS 복호기의 총 게이트 수는 약 77,000 개이며 최대 80MHz의 동작 속도를 나타내었다.

  • PDF

High-Speed Reed-Solomon Decoder Using New Degree Computationless Modified Euclid´s Algorithm (새로운 DCME 알고리즘을 사용한 고속 Reed-Solomon 복호기)

  • 백재현;선우명훈
    • Journal of the Institute of Electronics Engineers of Korea SD
    • /
    • v.40 no.6
    • /
    • pp.459-468
    • /
    • 2003
  • This paper proposes a novel low-cost and high-speed Reed-Solomon (RS) decoder based on a new degree computationless modified Euclid´s (DCME) algorithm. This architecture has quite low hardware complexity compared with conventional modified Euclid´s (ME) architectures, since it can remove completely the degree computation and comparison circuits. The architecture employing a systolic away requires only the latency of 2t clock cycles to solve the key equation without initial latency. In addition, the DCME architecture using 3t+2 basic cells has regularity and scalability since it uses only one processing element. The RS decoder has been synthesized using the 0.25${\mu}{\textrm}{m}$. Faraday CMOS standard cell library and operates at 200MHz and its data rate suppots up to 1.6Gbps. For tile (255, 239, 8) RS code, the gate counts of the DCME architecture and the whole RS decoder excluding FIFO memory are only 21,760 and 42,213, respectively. The proposed RS decoder can reduce the total fate count at least 23% and the total latency at least 10% compared with conventional ME architectures.

Implementation of Reed-Solomon Decoder Using the efficient Modified Euclid Module (효율적 구조의 수정 유클리드 구조를 이용한 Reed-Solomon 복호기의 설계)

  • Kim, Dong-Sun;Chung, Duck-Jin
    • Proceedings of the KIEE Conference
    • /
    • 1998.11b
    • /
    • pp.575-578
    • /
    • 1998
  • In this paper, we propose a VLSI architecture of Reed-Solomon decoder. Our goal is the development of an architecture featuring parallel and pipelined processing to improve the speed and low power design. To achieve the this goal, we analyze the RS decoding algorithm to be used parallel and pipelined processing efficiently, and modified the Euclid's algorithm arithmetic part to apply the parallel structure in RS decoder. The overall RS decoder are compared to Shao's, and we show the 10% area efficiency than Shao's time domain decoder and three times faster, in addition, we approve the proposed RS decoders with Altera FPGA Flex 10K-50, and Implemeted with LG 0.6{\mu}$ processing.

  • PDF

High-Performance Variable-Length Reed-Solomon Decoder Architecture for Gigabit WPAN Applications (기가비트 WPAN용 고성능 가변길이 리드-솔로몬 복호기 구조)

  • Choi, Chang-Seok;Lee, Han-Ho
    • Journal of the Institute of Electronics Engineers of Korea SD
    • /
    • v.49 no.1
    • /
    • pp.25-34
    • /
    • 2012
  • This paper presents a universal architecture for variable-length eight-parallel Reed-Solomon (RS) decoder for high-rate WPAN systems. The proposed architecture can support not only RS(255,239) code but various shortened RS codes. Moreover, variable-length architecture provides variable low latency for various shortened RS codes and the eight-parallel design also provides high data processing rate. Using 90-$nm$ CMOS standard cell technology, the proposed RS decoder has been synthesized and measured for performance. The proposed RS decoder can provide a maximum 19-$Gbps$ data rate at clock frequency 300 $MHz$.

Design of Reed Solomon Encoder/Decoder for Compact Disks (컴팩트 디스크를 위한 Reed Solomon 부호기/복호기 설계)

  • 김창훈;박성모
    • Proceedings of the IEEK Conference
    • /
    • 2000.11b
    • /
    • pp.281-284
    • /
    • 2000
  • This paper describes design of a (32, 28) Reed Solomon decoder for optical compact disk with double error detecting and correcting capability. A variety of error correction codes(ECCs) have been used in magnetic recordings, and optical recordings. Among the various types of ECCs, Reed Solomon(RS) codes has emerged as one the most important ones. The most complex circuit in the RS decoder is the part for finding the error location numbers by solving error location polynomial, and the circuit has great influence on overall decoder complexity. We use RAM based architecture with Euclid's algorithm, Chien search algorithm and Forney algorithm. We have developed VHDL model and peformed logic synthesis using the SYNOPSYS CAD tool. The total umber of gate is about 11,000 gates.

  • PDF

Design of an Area-Efficient Reed-Solomon Decoder using Pipelined Recursive Technique (파이프라인 재귀적인 기술을 이용한 면적 효율적인 Reed-Solomon 복호기의 설계)

  • Lee, Han-Ho
    • Journal of the Institute of Electronics Engineers of Korea SD
    • /
    • v.42 no.7 s.337
    • /
    • pp.27-36
    • /
    • 2005
  • This paper presents an area-efficient architecture to implement the high-speed Reed-Solomon(RS) decoder, which is used in a variety of communication systems such as wireless and very high-speed optical communications. We present the new pipelined-recursive Modified Euclidean(PrME) architecture to achieve high-throughput rate and reducing hardware-complexity using folding technique. The proposed pipelined recursive architecture can reduce the hardware complexity about 80$\%$ compared to the conventional systolic-array and fully-parallel architecture. The proposed RS decoder has been designed and implemented with the 0.13um CMOS technology in a supply voltage of 1.2 V. The result show that total number of gate is 393 K and it has a data processing rate of S Gbits/s at clock frequency of 625 MHz. The proposed area-efficient architecture can be readily applied to the next generation FEC devices for high-speed optical communications as well as wireless communications.

Erasure decoding strategies for RS product code reducing undetected error rate (검출 불능 오류율을 향상기키는 Reed-Solomon 적부호의 이레이져 복호방법)

  • 김정헌;염창열;송홍엽;강구호;김순태;백세현
    • The Journal of Korean Institute of Communications and Information Sciences
    • /
    • v.26 no.4B
    • /
    • pp.427-436
    • /
    • 2001
  • RS product codes are widely used in digital storage systems. There are lots of decoding strategies for product code for short-length RS codes. Unfortunately many of them cannot be applied to long-length RS product codes because of the complexity of decoder. This paper proposes new decoding strategies which can be used in long length RS product codes.

  • PDF