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Matrix perturbation theory is utilized to investigate high-rank line of sight multiple input multiple output channels in a microwave relay system.The upper and lower bounds of channel capacity are derived based on space time block codes technique and singular values decomposition.A useful constraint for designing LOS MIMO channels is developed by the use of the condition number of the MIMO channel matrix.The theoretical analysis of channel capacity is confirmed by the simulation.The results show that the proposed method is able to give a physical explanation of the high-rank LOS MIMO channel matrix characteristics.
Matrix perturbation theory is utilized to investigate high-rank line of sight multiple input multiple output channels in a microwave relay system. The upper and lower bounds of channel capacity are derived based on space time block codes technique and singular values decomposition. A useful constraint for designing LOS MIMO channels is developed by the use of the condition number of the MIMO channel matrix. The theoretical analysis of channel capacity is confirmed by the simulation. The results show that the proposed method is able to give a physical explanation of the high-rank LOS MIMO channel matrix characteristics.