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仿真(n,k,m)非系统卷积码的桶式堆栈算法(Stack-Bucket Algorithm)序列译码在AWGN信道条件下的误码性能,信噪比区间、卷积码参数、生成序列以及吊桶大小、堆栈大小等算法参数均可以自己设定。-Simulation (n, k, m) non-systematic convolutional codes of the barrel stack algorithm (Stack-Bucket Algorithm) sequence decoding in the AWGN ch
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simple code to find BER using convolutional codes
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scr ipt for computing BER with Binary Convolutional Code
and Viterbi decoding.
Convolutional code of Rate-1/2, Generator polynomial - [7,5] octal
Hard decision and soft decison decoding is used. -scr ipt for computing BER with Binary Conv
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This file calculate BER of concatenated code. RS+Convolutional-This file calculate BER of concatenated code. RS+Convolutional
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实现 AWGN信道下的理论误码特性和仿真误码特性,GSM系统卷积码在AWGN信道的误码特性,GSM系统卷积码在突发信道和AWGN信道的误码特性,GSM系统卷积码和交织编码在突发信道和AWGN信道误码特性-AWGN channel to achieve the theoretical BER performance and simulation of BER performance, GSM system, convolutional code in AWGN channel BER perfor
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scr ipt for computing BER with Binary Convolutional Code
and Viterbi decoding.
Convolutional code of Rate-1/2, Generator polynomial - [7,5] octal
Hard decision and soft decison decoding is used. -scr ipt for computing BER with Binary Convolu
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scr ipt for computing BER with Binary Convolutional Code
and Viterbi decoding with finite survivor state memory and
variable traceback depth
Convolutional code of Rate-1/2, Generator polynomial - [7,5] octal
Hard decision decoding i
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scr ipt for computing BER with Binary Convolutional Code
and Viterbi decoding with finite survivor state memory
Convolutional code of Rate-1/2, Generator polynomial - [7,5] octal
Hard decision and soft decison decoding is used.
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scr ipt for computing BER with Binary Convolutional Code
and Viterbi decoding.
Convolutional code of Rate-1/2, Generator polynomial - [7,5] octal
Hard decision decoding is used.
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512FFTOFDM系统仿真,包含卷积码和QPSK调制解调-BER performance simulation of 512 OFDM system, including convolutional code and QPSK
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Empirical investigation of the error correcting performance of a binary
convolutional code-a scr ipt which performs Monte Carlo simulations to obtain BER
curves in a noisy channel (AWGN).Assume the encoded signal is modulated by BPSK and is subje
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维特比译码算法的实现,以及卷积码译码的误码率性能分析-Viterbi decoding algorithm, as well as the BER performance of the convolutional code decoding
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it is a communication project, it includes the BER performance analysis of the convolutional codes and viterbi decoding technique. It is a physical layer implementation of the Wimax comcept.-it is a communication project, it includes the BER performa
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3/4卷积码编码原理分析与建模仿真
在SIMULINK模块设计中,完成了对卷积码的编码和译码以及误比特统计整个过程的模块仿真。最后,通过在仿真过程中分析了卷积码误比特率与信噪比之间的关系,及卷积码与非卷积码的对比。经过仿真和实测,并对测试结果作了分析。
-3/4 convolution coding theory and its modeling and simulation in SIMULINK module design, completed the convolutional c
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实现了一个基于卷积码的通信系统 可以统计不同信噪比的误码率(A convolutional code based communication system and implemented to calculate the BER of different SNR)
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BPSK与模拟通信系统相比,数字调制和解调同样是通过某种;在大多数情况下,数字调制是利用数字信号的离散值去;三种数字调制方式在抗干扰噪声能力和信号频谱利用率;2BPSK调制原理;二进制相移键控(BPSK)是利用基于MATLAB中的BPSK误码性能研究;
MATLAB提供了卷积码的convenc和相应的Viterbi译码函数vitdec,可以快速地得到编译码的结果。(BPSK compared with the analog communication system, digital modul
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