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在对目前普遍采用的非二进制低密度奇偶校验(NB -LDPC)码校验矩阵的准循环构造方法进行深入研究的基础上,提出了一种基于有限域的NB -LDPC码的立体构造方法,在构建基于有限域的基础矩阵后,运用立体扩展的方式构成循环 子矩阵,最终构造出具备准循环特性的非二进制校验矩阵。 通过对采用立体构造法构造的NB-LDPC码的性能仿真发现,与基于GF(29)的 RS(511,5)相比,本文 构造的NB-LDPC码在误比特率(BER)为10-7时可 以增加3.3 dB的净编码增益(NCG);在BER为 10-6时,本文构造的LDPC码与采用传统准循环方式构造的二 进制LDPC码、随机构造 的二进制LDPC码、基于有限域构造的32进制准循环LDPC码和基于欧式 几何构造的64进制的循 环LDPC码比较,分别多获得了0.56、0.56、0.03dB的NCG。通过对本文 构造的NB-LDPC码性能仿真发现,这类具有高度结构化的NB-LDPC码不仅具备 准循环特性,有利于硬件实现,同时在中短码长情况时展现出较好的纠错性能。 相似文献
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分组调度在异步光分组交换(OPS)节点中起着重要作用,一种智能的调度算法能减小分组的丢失率,增加节点的吞吐量,从而提高服务质量.文章提出了一种基于队列长度和时延约束的解决队列中分组"饿死"和时延问题的权重调度算法.算法通过计算队列长度和分组在队列中等待时间确定调度的权重值,以减小分组在核心节点处的资源竞争和等待时延,调度器计算每个输入端口的N×K个虚拟输出队列的权重值并调度最大权重值队列到可用的输出信道上.分析和仿真结果表明所提的权重调度算法具有高吞吐量和低分组丢失率特点. 相似文献
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The plasma window is an advanced apparatus that can work as the interface between a vacuum and a high pressure region. It can be used in many applications that need atmosphere-vacuum interface, such as a gas target, electron beam welding, synchrotron radiation and a spallation neutron source. A test bench of the plasma window is constructed in Peking University. A series of experiments and the corresponding parameter measurements have been presented in this article. The experiment result indicates the feasibility of such a facility acting as an interface between a vacuum and a high pressure region. 相似文献
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光通信中基于有限域加群的一种QC-LDPC码 总被引:7,自引:5,他引:2
针对光通信系统传输特性要求的日益提高,基于有限域GF(q)加群提出了一种构造简单且适合光通信系统的新颖准循环低密度奇偶校验(QC-LDPC)码构造方法,该构造方法可灵活的调整码长、码率且其编译码复杂度低。用此方法构造了适用于光通信系统的规则QC-LDPC(4599,4307)码。仿真结果表明,在BER=10-7时且码率均为93.7%的情况下,所构造的QC-LDPC(4599,4307)码的净编码器增益(NCG)比已广泛应用于光通信系统中的经典RS(255,239)码提高了约2.2dB,比用SCG构造方法构造的SCG-LDPC(3969,3720)码和非规则的QC-LDPC(3843,3603)码的NCG分别提高了约0.47dB和0.25dB,距离香农限约1dB。因而其纠错性能更强,更适用于高速长距离光通信系统。 相似文献
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A novel concatenated code based on the improved SCG-LDPC code for optical transmission systems 总被引:1,自引:0,他引:1
Based on the optimization and improvement for the construction method of systematically constructed Gallager (SCG) (4, k) code, a novel SCG low density parity check (SCG-LDPC)(3969, 3720) code to be suitable for optical transmission systems is constructed. The novel SCG-LDPC (6561,6240) code with code rate of 95.1% is constructed by increasing the length of SCG-LDPC (3969,3720) code, and in a way, the code rate of LDPC codes can better meet the high requirements of optical transmission systems. And then the novel concatenated code is constructed by concatenating SCG-LDPC(6561,6240) code and BCH(127,120) code with code rate of 94.5%. The simulation results and analyses show that the net coding gain (NCG) of BCH(127,120)+SCG-LDPC(6561,6240) concatenated code is respectively 2.28 dB and 0.48 dB more than those of the classic RS(255,239) code and SCG-LDPC(6561,6240) code at the bit error rate (BER) of 10 -7 . 相似文献