Based on the Wireless Mesh Network (WMN), a wireless emergency communicationsystem for underground coal mine which was designed to be capable of videosurveillance, voice communication, and environment monitoring at th...Based on the Wireless Mesh Network (WMN), a wireless emergency communicationsystem for underground coal mine which was designed to be capable of videosurveillance, voice communication, and environment monitoring at the same time wasproposed.The network architecture of the system was proposed, and its service model,extensible technology, medium access control, routing algorithm, channel allocation andsystem management technologies were analyzed according to the actual rescue requirementsof underground coal mine and the characteristics of underground spatial structureand radio transmissions.The relevant theories and key technologies were extracted,which would provide theoretical support for the system development.展开更多
文摘鉴于井下复杂噪声对信号检测的不利影响,针对以无线应急通信系统PED(Personal Emergency Device)为代表的井上井下超低频通信接收设备,提出一种不需要外接同频参考信号的数字相敏检波优化算法,并在PED模拟实验系统中,验证了接收部分应用数字相敏检波算法的效果。数字相敏检波通过对待测信号进行若干周期采样,并将采样值与存储于数组中相应参考值进行乘累加并取平均,求其同相分量与正交分量的方式,完成对信号幅值的计算。实验数据表明,当假定PED井下接收机的辨别能力是信号的相关性大于0.6时,系统能接收的最小信噪比为-58 d B,在一定程度上提高了接收有用信号的准确度,有利于仪器小型化、便捷化的实现。
基金Supported by the National Natural Science Foundation of China(50534060)the National High Technology Project of China(2007AA06Z106)
文摘Based on the Wireless Mesh Network (WMN), a wireless emergency communicationsystem for underground coal mine which was designed to be capable of videosurveillance, voice communication, and environment monitoring at the same time wasproposed.The network architecture of the system was proposed, and its service model,extensible technology, medium access control, routing algorithm, channel allocation andsystem management technologies were analyzed according to the actual rescue requirementsof underground coal mine and the characteristics of underground spatial structureand radio transmissions.The relevant theories and key technologies were extracted,which would provide theoretical support for the system development.