搜索资源列表
uwbreceive
- uwb脉冲位置调制的信号进行相关接收,并且画出其图形-UWB pulse position modulation signal associated receiver, and draw its graphics
ppmreceive
- uwb进行脉冲位置调制,并且进行相关接收,画出其图形-UWB pulse position modulation, and the associated receiver, to give their graphics
uwb_ppm
- 该程序仿真超宽带的脉冲位置调制。是在MATLAB下实现的。-ultra-wideband pulse position modulation. MATLAB is achievable.
CP0201_2PPM_TH
- TH-PPM(跳时脉冲位置调制)调制的超宽带脉冲形成的源代码-TH-PPM (TH pulse position modulation) modulation of the formation of ultra-wideband pulse source code
CP0201
- TH-UWB信号的产生,有随即信号发生器,脉冲位置调制等部分组成。-TH-UWB signals generated, then signal generator, pulse position modulation, and other components.
ppm_3
- this program performs pulse position modulation of two sequences: the sine wave and the triangular wave
PPM_UWB_Matlab
- PPM 脉冲位置调制,Matlab 代码,它描述了PPM 技术在UWB 超宽带无线通信中的应用-PPM, Pulse Position Modulation in use of UWB.
SpektrSignalOdinImp2222
- Function (SpektrSignalOdinImp2222.rar) calculates the spectrum of a rectangular pulse. Pulse duration and time position sets the user .
PPM-and-PAM
- 超宽带信号中高斯脉冲和冲击脉冲的产生,以及脉冲位置调制(PPM)和脉冲幅度调制(PAM),形成一个完整的电路来完成整个过程-UWB signal in the Gaussian pulse and impulse generation, and pulse position modulation (PPM) and pulse amplitude modulation (PAM), to form a complete circuit to complete the whole process
RANSMITTER_2PPM_TH
- 超宽带发射机,采样跳时脉冲位置调制方式进行。对于UWB学习非常重要-Ultra-wideband transmitter pulse position modulation, sampling jump. Is very important for UWB learning
Untitled2
- UWB无线通信系统采用脉冲位置调制PPM的解调程序-UWB wireless communication system using pulse position modulation and demodulation process of PPM
HDB3
- HDB3码 连“0”个数计数 V脉冲位置记录变量B脉冲位置记录变量 让0000的最后一个0改变为与前一个非零符号相同极性的符号-Even HDB3 code " 0" count the number of pulse position record variable B V pulse position to make 0000 a record variable is changed to 0 and the last one before a non-zero symbo
pipeilvboqi
- 使用脉冲压缩实现两个目标的测量,确定两个点目标的位置-Using pulse compression two goals measurement, determine the position of the two point target
FD3D_4.1.C
- fdtd三维编程,三维偶极子激励源,无吸收边界,在空间中心位置,高斯脉冲。(FDTD 3D programming, three-dimensional dipole excitation source, no absorption boundary, spatial center position, Gauss pulse)