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[MiddleWaremodulator

Description: ofdm中几种常用的调制方式的调制和解调程序,包括:BPSK、QPSK、16QAM、64QAM-modulation
Platform: | Size: 3072 | Author: 张静 | Hits:

[Otherofdm1

Description: 建立正交频分多路复用(OFDM)系统调制器的仿真模型,并编程给出具有K=10个子信道、符号区间T=100s、采用16点QAM信号时,OFDM系统调制器的输出信号。-The establishment of orthogonal frequency division multiplexing (OFDM) system, the simulation model of the modulator and the program is given with K = 10 Ge sub-channel, symbol interval T = 100s, with 16-point QAM signal, OFDM system, the modulator output signal .
Platform: | Size: 5120 | Author: 张燕燕 | Hits:

[ELanguageQAM16_OFDM

Description: This tile is the 16-QAM modulator for OFDM system s signal.
Platform: | Size: 1024 | Author: shi Chen | Hits:

[Otherhomework2

Description: 通信系统与仿真作业: 1)设计π/4-DPSK或16-QAM调制器仿真程序, 画出时域波形、 正交分量、同相分量波形,眼图,散点图等。 2)利用MATLAB进行DPSK在高斯信道下的BER性能仿真,并将结果与PSK性能进行比较。 3)已知 OFDM的数据传输速率为19.2Kbps, OFDM 符号长度为320,保护间隔为32点,子载波数为128,IFFT/FFT点数为256,载波频率320KHz,调制方案采用QPSK,仿真其在高斯信道下的BER性能。 -Communication systems and simulation tasks: 1) Design π/4-DPSK or 16-QAM modulator simulation program, draw time-domain waveform, quadrature component, in-phase component waveforms, eye diagrams, scatter plots, etc. 2) the use of MATLAB for DPSK in AWGN channel BER performance simulation, and the results are compared with PSK performance. 3) the known OFDM data transmission rate of 19.2Kbps, OFDM symbol length is 320, the guard interval is 32 points, the number of sub-carriers 128, IFFT/FFT points is 256, the carrier frequency is 320KHz, using the modulation scheme QPSK, simulation of the in Gaussian channel BER performance.
Platform: | Size: 268288 | Author: wander | Hits:

[3G developturbo_code

Description: LTE system, OFDM modulation and Turbo Coding, including Viterbi, BCJR and SOVA are extensively analysed, ending up with a system performance specification. These are used to implement a fixed length Turbo encoder, a 16-QAM modulator and a 16 point IFFT on an FPGA using MATLAB Simulink⃝ R with Xilinx⃝ R System Generator plugin. A MATLAB⃝ R script is developed to test the Simulink implementation. In addition, an iterative Turbo decoder is programmed using MATLAB⃝ R .
Platform: | Size: 11264 | Author: mezo | Hits:

[Communication-Mobileturbo_lte_ofdm_fpga_code

Description: LTE system, OFDM modulation and Turbo Coding, including Viterbi, BCJR and SOVA are extensively analysed, ending up with a system performance specification. These are used to implement a fixed length Turbo encoder, a 16-QAM modulator and a 16 point IFFT on an FPGA using MATLAB Simulink⃝ R with Xilinx⃝ R System Generator plugin. A MATLAB⃝ R script is developed to test the Simulink implementation. In addition, an iterative Turbo decoder is programmed using MATLAB⃝ R .
Platform: | Size: 11264 | Author: mezo | Hits:

[Communication-MobilefinalTURBOCODE_OFDM

Description: Throughout the project the LTE system, OFDM modulation and Turbo Coding, including Viterbi, BCJR and SOVA are extensively analysed, ending up with a system performance specification. These are used to implement a fixed length Turbo encoder, a 16-QAM modulator and a 16 point IFFT on an FPGA using MATLAB Simulink R ⃝ with Xilinx R ⃝ System Generator plugin. A MATLAB R ⃝ script is developed to test the Simulink implementation. In addition, an iterative Turbo decoder is programmed using MATLAB R ⃝ .-Throughout the project the LTE system, OFDM modulation and Turbo Coding, including Viterbi, BCJR and SOVA are extensively analysed, ending up with a system performance specification. These are used to implement a fixed length Turbo encoder, a 16-QAM modulator and a 16 point IFFT on an FPGA using MATLAB Simulink R ⃝ with Xilinx R ⃝ System Generator plugin. A MATLAB R ⃝ script is developed to test the Simulink implementation. In addition, an iterative Turbo decoder is programmed using MATLAB R ⃝ .
Platform: | Size: 2099200 | Author: mezo | Hits:

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