An attenuated iterative reliability-based major- ity-logic (AIML) decoding algorithm for low-density parity-check (LDPC) codes is proposed, which pertains to hybrid decoding schemes. The algorithm is devised based...An attenuated iterative reliability-based major- ity-logic (AIML) decoding algorithm for low-density parity-check (LDPC) codes is proposed, which pertains to hybrid decoding schemes. The algorithm is devised based on the orthogonal check-sums of one-step majority- logic (OSMLG) decoding algorithm in conjunction with certain of reliability measures of the received symbols. Computation of reliability measure of the syndrome sum is refined by introducing an attenuation factor. Simulation results show that, in binary-input additive white Gaussian noise (BI-AWGN) channel, the AIML decoding algorithm outperforms other popular iterative reliability-based major- ity-logic (IML) decoding algorithms with a slight increase in computational complexity. Within maximum iteration number of 5, the AIML algorithm can achieve almost identical error performance to sum-product algorithm (SPA). No error floor effect can be observed for the AIML algorithm down to the bit error rate (BER) of 10- s, while error floor appears for SPA around the BER of 10 7 even with maximum iteration number of 100. Furthermore, the inherent feature of parallel procession for AIML algorithm enforces the decoding speed in contrast to those serial decoding schemes, such as weighted bit-flipping (WBF) algorithm.展开更多
介绍了HG/T 20582—2020 《钢制化工容器强度计算规范》、 JB 4732—1995 《钢制压力容器——分析设计标准(2005年确认)》、 ASME BPVC.Ⅷ-1—2021 “Rules for Construction of Pressure Vessels Division 1”及ASME BPVC.Ⅷ-2—2021“...介绍了HG/T 20582—2020 《钢制化工容器强度计算规范》、 JB 4732—1995 《钢制压力容器——分析设计标准(2005年确认)》、 ASME BPVC.Ⅷ-1—2021 “Rules for Construction of Pressure Vessels Division 1”及ASME BPVC.Ⅷ-2—2021“Rules for Construction of Pressure Vessels Division 2—Alternative Rules”中关于外载荷作用下压力容器壳体局部应力的校核条件,并结合材料的安全系数,举例对各标准中局部应力校核限制条件进行分析讨论。认为ASME规范中的局部应力校核条件合理,对HG/T20582—2020、 JB 4732—1995中局部应力校核限制范围提出了建议。展开更多
文摘An attenuated iterative reliability-based major- ity-logic (AIML) decoding algorithm for low-density parity-check (LDPC) codes is proposed, which pertains to hybrid decoding schemes. The algorithm is devised based on the orthogonal check-sums of one-step majority- logic (OSMLG) decoding algorithm in conjunction with certain of reliability measures of the received symbols. Computation of reliability measure of the syndrome sum is refined by introducing an attenuation factor. Simulation results show that, in binary-input additive white Gaussian noise (BI-AWGN) channel, the AIML decoding algorithm outperforms other popular iterative reliability-based major- ity-logic (IML) decoding algorithms with a slight increase in computational complexity. Within maximum iteration number of 5, the AIML algorithm can achieve almost identical error performance to sum-product algorithm (SPA). No error floor effect can be observed for the AIML algorithm down to the bit error rate (BER) of 10- s, while error floor appears for SPA around the BER of 10 7 even with maximum iteration number of 100. Furthermore, the inherent feature of parallel procession for AIML algorithm enforces the decoding speed in contrast to those serial decoding schemes, such as weighted bit-flipping (WBF) algorithm.
文摘介绍了HG/T 20582—2020 《钢制化工容器强度计算规范》、 JB 4732—1995 《钢制压力容器——分析设计标准(2005年确认)》、 ASME BPVC.Ⅷ-1—2021 “Rules for Construction of Pressure Vessels Division 1”及ASME BPVC.Ⅷ-2—2021“Rules for Construction of Pressure Vessels Division 2—Alternative Rules”中关于外载荷作用下压力容器壳体局部应力的校核条件,并结合材料的安全系数,举例对各标准中局部应力校核限制条件进行分析讨论。认为ASME规范中的局部应力校核条件合理,对HG/T20582—2020、 JB 4732—1995中局部应力校核限制范围提出了建议。