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The basic parts of the BFSK transmitter are the preamble and the data input circuit. The preamble sequence is positioned in front of each packet of 122 bits for a total of 128 bits packet. The main purpose of the preamble is to facilitate the recepti
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实现(4,1,6)卷积码的维特比译码源程序,采用了最大似然算法-The realization of (4,1,6) convolutional code Viterbi source using the maximum likelihood algorithm
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产生(2,1,8)卷积码 ,其生成多项式为(561,753),二进制形式为(101110001,111101011)-Have (2,1,8) convolutional code, the generation polynomial for the (561,753), the binary form (101110001,111101011)
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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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卷积码编译码的matlab实现,采用类维特比译码方法-Convolutional code encoding and decoding of the matlab implementation, using class Viterbi Decoding Method
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包含卷积码众多资料,并附matlab软件的源码-Convolutional code contains a number of information, with the software source code matlab
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采用了最小化Gap-to-Capacity方式,码率为1/3的卷积信道编码,来寻找最接近香农限的信道编码方式,并给出了软件和硬件实现的方案,有源码和对应的paper,是卷积编码实现的一种较好思路,便捷和通用。-Used to minimize Gap-to-the Capacity way, a code rate of 1/3 convolutional channel coding, to find the closest to the Shannon limit of channel co
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基于IEEE802.11n标准,采用verilog语言设计的(2,1,7)卷积码viterbi译码器,支持1/2,2/3,3/4,5/6四种码率的译码,以测试无误-IEEE802.11n standard Verilog language design (2,1,7) convolutional code viterbi decoder support 1/2, 2/3, 3/4, 5/6 four bit rate decoding to test and correct
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TCH/FS信道编码仿真分析,包含卷积码、内编码、外编码、重排和交织-TCH/FS channel coding simulation analysis, contains a convolutional code, inner coding, encoding, rearrangement and interleaver
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移动通信系统中,卷积码的matlab仿真程序-Convolutional code matlab simulation program
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卷积码的编码译码过程,信道编码方面的应用-Decoding the convolutional code encoding process, the channel coding application
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(2,1,7)卷积码编码器
能设置初始状态和生成多项式的系数-(2,1,7) convolutional code encoder can set the initial state and the generator polynomial coefficients
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对线性分组码以及卷积码在不同信道(随机信道及突发信道)中纠错性能进行比较分析。-Linear block code and convolutional code error correction performance in different channels (random channel and burst channel) in a comparative analysis.
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采用(2,1,8)卷积码编码,采用viterbi译码算法进行解码(2,1,8 convolutional code is used, and Viterbi decoding algorithm is used to decode)
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