An optimized beamforming technique to improve the sumrate for multicell MIMO
S. Maythina Rani, Suraiya Tarannum
Abstract
S. Maythina Rani, Suraiya Tarannum
Abstract
An enhanced and robust transreceiver model is proposed here which controls the power consumption dynamically and improve overall sumrate over k-client MIMO scenario. In order to reduce the interference, pairing system among transmitter and receiver is proposed in such a way that local optimal point matches the most, the communication will established at that point only. Every information stream is encoded at a various data rate, though diverse streams can be encoded at different rates. We assume that the transmitter or local channel data could be obtained by that very transmitter terminal. We propose an enhancement approach to improvise sumrate overall, power control and transceiver architecture. The beamforming technique is incorporated at transmitter side and at the receiver end antennas are incorporated with different angels to amplify the signal in a better way. By this technique signal to noise ration could be improved and at the same time power consumption is minimized. Experimental evaluation shows that the result accomplished with proposed method is having better performance when compared to other existing techniques in MIMO/OFDM system.
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An enhanced and robust transreceiver model is proposed here which controls the power consumption dynamically and improve overall sumrate over k-client MIMO scenario. In order to reduce the interference, pairing system among transmitter and receiver is proposed in such a way that local optimal point matches the most, the communication will established at that point only. Every information stream is encoded at a various data rate, though diverse streams can be encoded at different rates. We assume that the transmitter or local channel data could be obtained by that very transmitter terminal. We propose an enhancement approach to improvise sumrate overall, power control and transceiver architecture. The beamforming technique is incorporated at transmitter side and at the receiver end antennas are incorporated with different angels to amplify the signal in a better way. By this technique signal to noise ration could be improved and at the same time power consumption is minimized. Experimental evaluation shows that the result accomplished with proposed method is having better performance when compared to other existing techniques in MIMO/OFDM system.
Key concepts: Transmitter, Beamforming, MIMO, Computer science, Transceiver, Electronic engineering, Channel (broadcasting), Transmitter power output