针对3G网络视频传输,提出一种应用层的服务质量(quality of service,QoS)控制方法.该方法采用线性预测算法计算丢包率,并引入严增松减等步长拥塞控制算法对视频输出码率进行自适应调节.实验结果表明,端到端延迟时间和延迟时间抖动等QoS...针对3G网络视频传输,提出一种应用层的服务质量(quality of service,QoS)控制方法.该方法采用线性预测算法计算丢包率,并引入严增松减等步长拥塞控制算法对视频输出码率进行自适应调节.实验结果表明,端到端延迟时间和延迟时间抖动等QoS控制参数均符合通信行业对实时业务的指标要求,同时网络利用率也得以提高.该QoS控制方法适用于3G网络视频传输,具有良好的可行性和实用性.展开更多
[Objective] This study was to construct VPDN-based 3G wireless meteorological information transmission system, in order to achieve the backup transmission of real-time meteorological services in all levels of meteorol...[Objective] This study was to construct VPDN-based 3G wireless meteorological information transmission system, in order to achieve the backup transmission of real-time meteorological services in all levels of meteorological stations. [Method] The current situations and business requirements of municipal meteorological networks are analyzed, putting forward the idea of backup routes that using VPDN-based 3G wireless meteorological information transmission system as the ground transmission line. And the network structure, operation mode and the system implementation are described in detail. [Result] VPDN-based 3G wireless meteorological information transmission system realizes the backup of ground line. Compared with the Modem dial-up, it is more stable and with faster transferring speed. With the rapid development of communication technology and computer technology, the information transmission system will be more efficient and stable, and will play a greater role in meteorological information transmission. [Conclusion] With the continuous development of modern meteorology, various types of meteorological data increase, presenting higher demand for the meteorological information transmission system. The established VPND-based 3G wireless meteorological information transmission system of this study provides a solution for backup transmission of real-time meteorological services.展开更多
文摘针对3G网络视频传输,提出一种应用层的服务质量(quality of service,QoS)控制方法.该方法采用线性预测算法计算丢包率,并引入严增松减等步长拥塞控制算法对视频输出码率进行自适应调节.实验结果表明,端到端延迟时间和延迟时间抖动等QoS控制参数均符合通信行业对实时业务的指标要求,同时网络利用率也得以提高.该QoS控制方法适用于3G网络视频传输,具有良好的可行性和实用性.
文摘[Objective] This study was to construct VPDN-based 3G wireless meteorological information transmission system, in order to achieve the backup transmission of real-time meteorological services in all levels of meteorological stations. [Method] The current situations and business requirements of municipal meteorological networks are analyzed, putting forward the idea of backup routes that using VPDN-based 3G wireless meteorological information transmission system as the ground transmission line. And the network structure, operation mode and the system implementation are described in detail. [Result] VPDN-based 3G wireless meteorological information transmission system realizes the backup of ground line. Compared with the Modem dial-up, it is more stable and with faster transferring speed. With the rapid development of communication technology and computer technology, the information transmission system will be more efficient and stable, and will play a greater role in meteorological information transmission. [Conclusion] With the continuous development of modern meteorology, various types of meteorological data increase, presenting higher demand for the meteorological information transmission system. The established VPND-based 3G wireless meteorological information transmission system of this study provides a solution for backup transmission of real-time meteorological services.