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网络环境下的编校适应
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作者 于晶 《辽宁警专学报》 2002年第2期78-79,共2页
网络的发展与普及 ,使编辑工作逐渐向无纸化方向发展 ,具有了新的特点。作为书刊编辑、校对人员就要顺应因环境变化而带来的工作变化 ,首先做到心态的适应 ,其次做好能力的准备。
关键词 网络环境 编辑工作 校对人员 编校适应 期刊 无纸化编辑
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JOINT LLR-CRC ERROR MITIGATION FOR TWO-WAY ADAPTIVE DENOISE-AND-FORWARD NETWORK CODING
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作者 Cheng Yulun Yang Longxiang 《Journal of Electronics(China)》 2013年第4期352-361,共10页
Network Coding (NC) brings correlation between the coded signals from different sources, which makes the system more vulnerable to the decode error at relay. Conventional Cyclic Redundancy Code (CRC) has been implemen... Network Coding (NC) brings correlation between the coded signals from different sources, which makes the system more vulnerable to the decode error at relay. Conventional Cyclic Redundancy Code (CRC) has been implemented for error bit detection. However, its error correction is simply ignored. To fully exploit this feature, this paper proposes a novel joint Log-Likelihood Ratio (LLR) CRC error mitigation for NC two way relay channel. Specific thresholds are designed to estimate the error number of data block and identify those which can be recovered if the number is within the error correction scope of CRC. We examine two modes of the thresholds, one based on the average Bit Error Rate (BER) of source-relay link, while the other based on that of instantaneous one. We provide the full analysis for the Pair-wise Error Probability (PEP) performance of the scheme. A variety of numerical results are presented to reveal the superiority of the proposed scheme to conventional CRC NC under independent Rayleigh fading channels. Moreover, the efficiencies of the proposed thresholds are also validated. 展开更多
关键词 Network Coding (NC) Log-Likelihood Ratio (LLR) Cyclic Redundancy Code (CRC) Denoise-and-forward Pair-wise Error Probability (PEP)
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