spacetimecode
代码说明:
用Matlab实现空时分组编码对其MIMO系统性能进行分析得出理想的结果(Using Matlab realize their space-time block coding MIMO system performance analysis of the desired results)
文件列表:
space-time coding project--Matlab_files
.......................................\Channel
.......................................\.......\awgnbase.m
.......................................\.......\rayleigh.m
.......................................\Functionlist.doc
.......................................\functiontemplate.m
.......................................\Receiver
.......................................\........\berplot.m
.......................................\........\channel_estimator.m
.......................................\........\channel_estimatorb.m
.......................................\........\channel_estimator_.m
.......................................\........\combiner.m
.......................................\........\detector.m
.......................................\........\detector_ortho.m
.......................................\........\down_converter.m
.......................................\........\down_sampler.m
.......................................\........\freq_offset.m
.......................................\........\freq_offset_compensate.m
.......................................\........\low_pass.m
.......................................\........\matched_filter.m
.......................................\........\orthosynchronization.m
.......................................\........\receive_for_channel.m
.......................................\........\receive_for_channel2.m
.......................................\........\receive_for_channel3.m
.......................................\........\remove_mean.m
.......................................\........\synchronization.m
.......................................\........\synchronization2.m
.......................................\........\trigger.m
.......................................\Transmitter
.......................................\...........\add_orthotrain.m
.......................................\...........\add_orthotrain_mult.m
.......................................\...........\add_start_seq.m
.......................................\...........\add_training.m
.......................................\...........\add_training2.m
.......................................\...........\add_training_mult.m
.......................................\...........\alamouti.m
.......................................\...........\basesim.m
.......................................\...........\basesim_mult_blocks.m
.......................................\...........\basesim_ortho.m
.......................................\...........\bpsk.m
.......................................\...........\carrier.m
.......................................\...........\get_datablock.m
.......................................\...........\make_orthotrain.m
.......................................\...........\pulseshape.m
.......................................\...........\raised_cosine.m
.......................................\...........\random_data.m
.......................................\...........\random_training.m
.......................................\...........\root_raised_cosine.m
.......................................\...........\simulation.m
.......................................\...........\simulation_for_channel.m
.......................................\...........\simulation_ortho.m
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