Multi-user cooperation virtual 4-antenna time circulation delayed transmission diversity system based on two-dimensional block spread spectrum (SPSP) technology
A technology of multi-user cooperation and cyclic delay, applied in the field of multi-user cooperative virtual 4-antenna space-time cyclic delay transmission diversity system, can solve the problems of poor system throughput and bit error rate performance, poor cooperation performance, multi-user interference, etc. Achieve large throughput capacity, excellent system bit error rate performance, and eliminate the effects of poor system throughput and bit error rate performance
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specific Embodiment approach 1
[0068] Specific implementation mode 1. Combination figure 1 Describe this specific implementation mode, multi-user cooperative virtual 4-antenna space-time cyclic delay transmission diversity system based on two-dimensional block spread spectrum technology, which is characterized in that: under the SC-CDMA system, the cooperative transmission process of the source node and the relay node is :
[0069] The transmitting process of the source node in the first time slot is:
[0070] Step 1, performing chip-level spread spectrum on the modulated signal to obtain a chip-level spread spectrum signal;
[0071] Step 2, performing equivalent time-domain space-time coding on the chip-level spread-spectrum signal obtained in step 1 to obtain 2 coded signals, which are the first signal and the second signal respectively;
[0072] Step 3. Carry out block spreading of the first and second signals described in step two respectively to obtain the first and second signals after block spreadi...
specific Embodiment approach 2
[0099] Specific embodiment two, combine figure 2 Describe this specific implementation mode, a multi-user cooperative virtual 4-antenna space-time cyclic delay transmission diversity system based on two-dimensional block spread spectrum technology, under the MC-CDMA system, during the cooperative transmission process of the source node and the relay node:
[0100] The source node signal transmission process in the first time slot is:
[0101] Step 1, performing chip-level spreading and interleaving on the modulated signal to obtain a signal after chip-level spreading and interleaving;
[0102] Step 2, performing equivalent space-time encoding in time domain on the transformed signal obtained in step 1, to obtain 2 encoded signals, which are respectively the first signal and the second signal;
[0103] Step 3. Perform serial / parallel conversion on the first signal and the second signal obtained in step 2, and then perform inverse fast Fourier transform respectively, and perfo...
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