在加性高斯白噪声(additive white Gaussian noise,AWGN)信道中设计一种低密度奇偶校验(low-density parity-check,LDPC)码的最大似然译码算法是一项具有挑战性的工作。麦克斯韦译码算法在二进制擦除信道下具有优越的性能,但把这种算法...在加性高斯白噪声(additive white Gaussian noise,AWGN)信道中设计一种低密度奇偶校验(low-density parity-check,LDPC)码的最大似然译码算法是一项具有挑战性的工作。麦克斯韦译码算法在二进制擦除信道下具有优越的性能,但把这种算法移植到其他信道却非常困难。引入了信道转换的思想实现两个不同信道之间的转换,并利用该方法成功地将麦克斯韦算法应用到AWGN信道中,提出了一种将信度传播算法和麦克斯韦算法有机结合的联合译码算法,即信度传播-麦克斯韦译码算法,该算法可缩小与最大似然译码算法之间的性能差距。仿真表明,该译码算法可打破大多数小陷阱集从而获得比信度传播译码算法更低的误帧率,并且可消除大多数信度传播译码后出现的小错误。展开更多
Efficient anti-jamming rateless coding based on cognitive Orthogonal Frequency Division Multiplexing (OFDM) modulation in Cognitive Radio Network (CRN) is mainly discussed. Rateless coding with small redundancy and lo...Efficient anti-jamming rateless coding based on cognitive Orthogonal Frequency Division Multiplexing (OFDM) modulation in Cognitive Radio Network (CRN) is mainly discussed. Rateless coding with small redundancy and low complexity is presented, and the optimal design methods of building rateless codes are also proposed. In CRN, anti-jamming rateless coding could recover the lost packets in parallel channels of cognitive OFDM, thus it protects Secondary Users (SUs) from the in-terference by Primary Users (PUs) efficiently. Frame Error Rate (FER) and throughput performance of SU employing anti-jamming rateless coding are analyzed in detail. Performance comparison between rateless coding and piecewise coding are also presented. It is shown that, anti-jamming rateless coding provides low FER and Word Error Rate (WER) performance with uniform sub-channel selection. Meanwhile, it is also verified that, in higher jamming rate and longer code redundancy scenario, rateless coding method could achieve better FER and throughput performance than another anti-jamming coding schemes.展开更多
文摘在加性高斯白噪声(additive white Gaussian noise,AWGN)信道中设计一种低密度奇偶校验(low-density parity-check,LDPC)码的最大似然译码算法是一项具有挑战性的工作。麦克斯韦译码算法在二进制擦除信道下具有优越的性能,但把这种算法移植到其他信道却非常困难。引入了信道转换的思想实现两个不同信道之间的转换,并利用该方法成功地将麦克斯韦算法应用到AWGN信道中,提出了一种将信度传播算法和麦克斯韦算法有机结合的联合译码算法,即信度传播-麦克斯韦译码算法,该算法可缩小与最大似然译码算法之间的性能差距。仿真表明,该译码算法可打破大多数小陷阱集从而获得比信度传播译码算法更低的误帧率,并且可消除大多数信度传播译码后出现的小错误。
基金Supported by the National Natural Science Foundation of China (No. 60972039)the Scientific Planning Project of Zhejiang Province entitled "Research and Development of Smart Antenna for the Next Generation Mobile Com-munications Based on TDD"the Young Staff Startup Research Foundation of Hangzhou Dianzi University entitled "Research on Key Technologies of Resource Allocation in Cognitive Radio Networks Based on Multicarrier Modulation"
文摘Efficient anti-jamming rateless coding based on cognitive Orthogonal Frequency Division Multiplexing (OFDM) modulation in Cognitive Radio Network (CRN) is mainly discussed. Rateless coding with small redundancy and low complexity is presented, and the optimal design methods of building rateless codes are also proposed. In CRN, anti-jamming rateless coding could recover the lost packets in parallel channels of cognitive OFDM, thus it protects Secondary Users (SUs) from the in-terference by Primary Users (PUs) efficiently. Frame Error Rate (FER) and throughput performance of SU employing anti-jamming rateless coding are analyzed in detail. Performance comparison between rateless coding and piecewise coding are also presented. It is shown that, anti-jamming rateless coding provides low FER and Word Error Rate (WER) performance with uniform sub-channel selection. Meanwhile, it is also verified that, in higher jamming rate and longer code redundancy scenario, rateless coding method could achieve better FER and throughput performance than another anti-jamming coding schemes.