信道带宽窄、强多途、强噪声干扰一直是水下信息高速、可靠传输的主要障碍,文中提出用网格编码调制技术(trellis-coded modulation,TCM)与正交频分复用技术(orthogonal frequency division multiplexing,OFDM)相结合的传输体制可有效解...信道带宽窄、强多途、强噪声干扰一直是水下信息高速、可靠传输的主要障碍,文中提出用网格编码调制技术(trellis-coded modulation,TCM)与正交频分复用技术(orthogonal frequency division multiplexing,OFDM)相结合的传输体制可有效解决水下高速数据传输的带宽效率和可靠性问题。详细介绍了TCM、TCM-8PSK的原理及在基于OFDM的水声通信系统中的应用,理论分析和计算机仿真结果表明,使用该传输体制的水声通信系统能在不损失数据速率也不增加带宽的情况下能使编码增益提高3 dB左右,水声通信系统的性能得到明显改善。展开更多
A novel kind of multidimension symbol/sequence trellis coded modulation (TCM) based on TCM of lower coding rate has been constructed. The redundancy of this new kind of TCM is provided not only by the modulated symbo...A novel kind of multidimension symbol/sequence trellis coded modulation (TCM) based on TCM of lower coding rate has been constructed. The redundancy of this new kind of TCM is provided not only by the modulated symbol sequence but also by the PN sequences for spreading spectrum as well. The performance of direct sequence spread spectrum multiple access (DS/SSMA) system with this symbol/sequence TCM over flat Rayleigh fading channel has been investigated by theoretical analysis and numerical simulation. The results obtained in this research demonstrate the performance improvements of this system in comparison with that of the DS/SSMA system with conventional TCM under the same conditions.展开更多
文摘A novel kind of multidimension symbol/sequence trellis coded modulation (TCM) based on TCM of lower coding rate has been constructed. The redundancy of this new kind of TCM is provided not only by the modulated symbol sequence but also by the PN sequences for spreading spectrum as well. The performance of direct sequence spread spectrum multiple access (DS/SSMA) system with this symbol/sequence TCM over flat Rayleigh fading channel has been investigated by theoretical analysis and numerical simulation. The results obtained in this research demonstrate the performance improvements of this system in comparison with that of the DS/SSMA system with conventional TCM under the same conditions.