The purpose of computer-aided design of new adaptive pulsed arc technologies of welding is: to de- sign optimum algorithms of pulsed control over main energy parameters of welding.It permits:to in- crease welding ...The purpose of computer-aided design of new adaptive pulsed arc technologies of welding is: to de- sign optimum algorithms of pulsed control over main energy parameters of welding.It permits:to in- crease welding productivity, to stabilize the welding regime, to control weld formation,taking into ac- count its spatial position, to proveal specie strength of the welded and coatings. Computer- aided design reduces the time of development of new pulsed arc technology:provides the optimization of technological referes according to the operating conditions of welded joints,the prediction of the ser- vice life of the welds.The developed methodology of computer-aided design of advanced technologies, models, original software, adaptive algorithms of pulsed control, and spend equipment permits to regulate penetration,the weld shape, the sizes of heat - affected zone; to predict sired properties and quality of welded joints.展开更多
In this paper, both the high-complexity near-ML list decoding and the low-complexity belief propagation decoding are tested for some well-known regular and irregular LDPC codes. The complexity and performance trade-of...In this paper, both the high-complexity near-ML list decoding and the low-complexity belief propagation decoding are tested for some well-known regular and irregular LDPC codes. The complexity and performance trade-off is shown clearly and demonstrated with the paradigm of hybrid decoding. For regular LDPC code, the SNR-threshold performance and error-floor performance could be improved to the optimal level of ML decoding if the decoding complexity is progressively increased, usually corresponding to the near-ML decoding with progressively increased size of list. For irregular LDPC code, the SNR-threshold performance and error-floor performance could only be improved to a bottle-neck even with unlimited decoding complexity. However, with the technique of CRC-aided hybrid decoding, the ML performance could be greatly improved and approached with reasonable complexity thanks to the improved code-weight distribution from the concatenation of CRC and irregular LDPC code. Finally, CRC-aided 5GNR-LDPC code is evaluated and the capacity-approaching capability is shown.展开更多
提出了一种不受高度限制的区域定位系统高程辅助三星定位算法.该算法既不依赖于先验的位置信息和定位结果,也不需要构建近似椭球方程.算法的关键是在牛顿算法迭代过程中不断更新接收机估算位置到地心的虚拟伪距.结合中国区域定位系统(Ch...提出了一种不受高度限制的区域定位系统高程辅助三星定位算法.该算法既不依赖于先验的位置信息和定位结果,也不需要构建近似椭球方程.算法的关键是在牛顿算法迭代过程中不断更新接收机估算位置到地心的虚拟伪距.结合中国区域定位系统(Chinese Area Positioning System,CAPS)的试验验证星座开展了仿真分析,结果表明:在用户高度已知的情况下,当高度达到中轨卫星轨道高度(约12×103 km)时,该算法仍能够进行正常的定位解算.在分析高程辅助算法中精度衰减矩阵的基础上,提出了高程辅助下误差椭圆轴长和轴方向的计算公式.结合CAPS试验验证星座仿真分析表明,提出的计算公式可以准确描述误差椭圆的几何特征.展开更多
文摘The purpose of computer-aided design of new adaptive pulsed arc technologies of welding is: to de- sign optimum algorithms of pulsed control over main energy parameters of welding.It permits:to in- crease welding productivity, to stabilize the welding regime, to control weld formation,taking into ac- count its spatial position, to proveal specie strength of the welded and coatings. Computer- aided design reduces the time of development of new pulsed arc technology:provides the optimization of technological referes according to the operating conditions of welded joints,the prediction of the ser- vice life of the welds.The developed methodology of computer-aided design of advanced technologies, models, original software, adaptive algorithms of pulsed control, and spend equipment permits to regulate penetration,the weld shape, the sizes of heat - affected zone; to predict sired properties and quality of welded joints.
文摘In this paper, both the high-complexity near-ML list decoding and the low-complexity belief propagation decoding are tested for some well-known regular and irregular LDPC codes. The complexity and performance trade-off is shown clearly and demonstrated with the paradigm of hybrid decoding. For regular LDPC code, the SNR-threshold performance and error-floor performance could be improved to the optimal level of ML decoding if the decoding complexity is progressively increased, usually corresponding to the near-ML decoding with progressively increased size of list. For irregular LDPC code, the SNR-threshold performance and error-floor performance could only be improved to a bottle-neck even with unlimited decoding complexity. However, with the technique of CRC-aided hybrid decoding, the ML performance could be greatly improved and approached with reasonable complexity thanks to the improved code-weight distribution from the concatenation of CRC and irregular LDPC code. Finally, CRC-aided 5GNR-LDPC code is evaluated and the capacity-approaching capability is shown.
文摘提出了一种不受高度限制的区域定位系统高程辅助三星定位算法.该算法既不依赖于先验的位置信息和定位结果,也不需要构建近似椭球方程.算法的关键是在牛顿算法迭代过程中不断更新接收机估算位置到地心的虚拟伪距.结合中国区域定位系统(Chinese Area Positioning System,CAPS)的试验验证星座开展了仿真分析,结果表明:在用户高度已知的情况下,当高度达到中轨卫星轨道高度(约12×103 km)时,该算法仍能够进行正常的定位解算.在分析高程辅助算法中精度衰减矩阵的基础上,提出了高程辅助下误差椭圆轴长和轴方向的计算公式.结合CAPS试验验证星座仿真分析表明,提出的计算公式可以准确描述误差椭圆的几何特征.