Cooperative transmission method for extended hybrid carrier modulation and data interleaving
A mixed carrier and coordinated transmission technology, applied in digital transmission system, transmission system, multi-carrier system, etc., can solve the problem of poor anti-channel performance, achieve good compatibility, enhance anti-channel fading performance and anti-channel burst error performance, the effect of reducing the probability of deep fading loss
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specific Embodiment approach 1
[0051] Specific implementation mode 1. Combination figure 1 This embodiment will be described. An extended hybrid carrier modulation and data interleaving coordinated transmission method described in this embodiment, the method specifically includes the following steps:
[0052] Step 1. Perform baseband constellation mapping on the 0 and 1 bit data generated by the information source, and obtain the modulation result after constellation mapping;
[0053] Step 2, group the modulation results obtained in step 1, divide the modulation results into M data blocks of equal length, each data block corresponds to a frame of data; use X i′ , i'=1,2,3,..., M represents the i'th frame data, M is the total number of data blocks;
[0054] Step 3, respectively performing extended mixed carrier modulation on each frame of data obtained in step 2, to obtain an output signal obtained by extending each frame of data through extended mixed carrier modulation;
[0055] The output signal obtain...
specific Embodiment approach 2
[0078] Specific implementation mode two: the difference between this implementation mode and specific implementation mode one is that the specific process of the step two is:
[0079] Starting from the first bit of the modulation result obtained in step 1, divide the modulation result into M data blocks of equal length, and the length L of each data block is 2 N , N is a positive integer;
[0080] i'th frame data X i′ =[x 0 x 1 … x L-1 ], x 0 , x 1 ,...,x L-1 Respectively for the i′th frame data X i′ 1st, 2nd, ..., 2nd of N data.
[0081] In this embodiment, the grouping starts from the first data of the modulation result, and the first data to the second data of the modulation result N The data is divided into one group, as the first data block, corresponding to the first frame data; the second of the modulation result N +1 data to the 2nd N+1 The data is divided into one group, as the second data block, corresponding to the second frame data; similarly, until t...
specific Embodiment approach 3
[0082] Specific embodiment three: the difference between this embodiment and specific embodiment two is that the value of the number of data frames M' in each group is N * Represents a positive integer.
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