提出了一种新的调制方法——标识组合脉冲位置调制(Flag-Compound Pulse Position Modula-tion,FCPPM)。详细阐述了FCPPM调制的原理,比较了单位传信率、带宽效率和信号冗余度,用Matlab对编译码进行了仿真。分析和仿真结果表明,与PPM调...提出了一种新的调制方法——标识组合脉冲位置调制(Flag-Compound Pulse Position Modula-tion,FCPPM)。详细阐述了FCPPM调制的原理,比较了单位传信率、带宽效率和信号冗余度,用Matlab对编译码进行了仿真。分析和仿真结果表明,与PPM调制方式相比,FCPPM调制技术具有单位传信率和带宽效率高等优点;与MPPM调制方式相比,FCPPM调制方式的编译码简单且容易实现。展开更多
The drum shearer and high pressure water jet combined cutting system is an effective technology to cut hard coal-rock, but one problem of the technology is the choice of pick and nozzle location parameters. In order t...The drum shearer and high pressure water jet combined cutting system is an effective technology to cut hard coal-rock, but one problem of the technology is the choice of pick and nozzle location parameters. In order to solve the problem, the process and mechanism of combined cutting arc studied and mining seepage catastrophe theory is used to construct the mathematic and physical model of combined cutting hard coal-rock. Based on the model and detailed analysis of combined cutting mechanism, the single pick and nozzle combined cutting test-bed is built to test the main pick and nozzle location parameters of drum shearer and water jet combined cutting system. Test results show that the best vertical distance between the pick-tip and nozzle center point is the sum of cutting thickness and proper target distance in the Y axial direction; the best horizontal distance is the length between pick-tip point and coal-rock surface bursting crack point in the X axial direction. The best incident angle of water jet should be the same as the bursting crack line's angle in theory, but considering other important factors comprehensively, it is more reasonable when the incident angle of water jet is 90°.展开更多
文摘提出了一种新的调制方法——标识组合脉冲位置调制(Flag-Compound Pulse Position Modula-tion,FCPPM)。详细阐述了FCPPM调制的原理,比较了单位传信率、带宽效率和信号冗余度,用Matlab对编译码进行了仿真。分析和仿真结果表明,与PPM调制方式相比,FCPPM调制技术具有单位传信率和带宽效率高等优点;与MPPM调制方式相比,FCPPM调制方式的编译码简单且容易实现。
基金Project(2012AA062104) supported by the National High Technology Research and Development Program of ChinaProject(201104583) supported by the Postdoctoral Special Funded Projects,China
文摘The drum shearer and high pressure water jet combined cutting system is an effective technology to cut hard coal-rock, but one problem of the technology is the choice of pick and nozzle location parameters. In order to solve the problem, the process and mechanism of combined cutting arc studied and mining seepage catastrophe theory is used to construct the mathematic and physical model of combined cutting hard coal-rock. Based on the model and detailed analysis of combined cutting mechanism, the single pick and nozzle combined cutting test-bed is built to test the main pick and nozzle location parameters of drum shearer and water jet combined cutting system. Test results show that the best vertical distance between the pick-tip and nozzle center point is the sum of cutting thickness and proper target distance in the Y axial direction; the best horizontal distance is the length between pick-tip point and coal-rock surface bursting crack point in the X axial direction. The best incident angle of water jet should be the same as the bursting crack line's angle in theory, but considering other important factors comprehensively, it is more reasonable when the incident angle of water jet is 90°.