Wireless-digital-communication-kamilo-feher-pdf 💿


Wireless-digital-communication-kamilo-feher-pdf 💿





             

Wireless-digital-communication-kamilo-feher-pdf


#gap-597448597 { padding-top: 10px; } Download Full-Text PDF Cite this Publication, P.Melia-Galarneau, and S.F. [Shehri], Computationally-efficient pseudo-error-monitoring schemes for multipath mitigation in OFDM wireless-communications systems, Vehicular Technology Conference (VTC), 2012-Spring IEEE 75th, San Francisco, California, May 31-Jun. 4, 2012.

The Figure 1.1.1. shows the structure of a wireless communication system and how radio waves work and connect the various devices of the wireless communication network, namely transmitter, receiver and the radio path which is the medium that connects the two. In wireless communication systems, the maximum information transfer distance is determined by the transmitter output power and the receiver sensitivity.

The Fig. 1.1.2. shows the structure of a wireless communication system and how radio waves work and connect the various devices of the wireless communication network, namely transmitter, receiver and the radio path which is the medium that connects the two. In wireless communication systems, the maximum information transfer distance is determined by the transmitter output power and the receiver sensitivity.

#gap-597448598 { padding-top: 10px; } Download Full-Text PDF Cite this Publication, X.Huo,Q. Wei, J.Chen, and X.Chen, A simple and robust low-complexity two-path receiver design based on joint phase rotation for OFDM systems, IEEE International Conference on Communications (ICC), Kuala Lumpur, Malaysia, May 12-17, 2009.

In wireless communication, the improvement of the information rate on the channel due to diversity is the focus of many papers, which will contribute to the development of a better wireless communication system. M. Alamouti and A. Duel-Hallen presented the Alamouti coding, where they demonstrated an improvement of the bit rate (or coding rate) over two transmit antennas compared to a single transmit antenna. Based on Alamouti coding method, several coding and modulation methods such as 64QAM, 64 QAM-IMM and 256QAM-IMM are proposed and the coding rate and bit error rate performance is evaluated. In these coding and modulation methods, diversity order is fixed by the number of transmission branches. In this paper we propose another diversity method, where we dynamically change the diversity branches by selecting between any pair of transmission branches. The problem is formulated as a maximization problem and an optimal pair of transmission branches is chosen by this maximization problem. From the simulation results included on this paper, it can be seen that this diversity method provides better improvement in the link margin without wasting of much power and also its circuit is quite easy to design as in each time the receiver will select only one branch with highest signal to noise ratio. However this technique of selecting one branch at a time is not an optimal technique to enhance the channel impairments as the resultant signal to noise ratio is not the contribution of all the diversity branches therefore we have shown how maximal ratio combining can be implemented.




#gap-597448597 { padding-top: 10px; } Download Full-Text PDF Cite this Publication, P.Melia-Galarneau, and S.F. [Shehri], Computationally-efficient pseudo-error-monitoring schemes for multipath mitigation in OFDM wireless-communications systems, Vehicular Technology Conference (VTC), 2012-Spring IEEE 75th, San Francisco, California, May 31-Jun. 4, 2012. The Figure 1.1.1. shows the structure of a wireless communication system and how radio waves work and connect the various devices of the wireless communication network, namely transmitter, receiver and the radio path which is the medium that connects the two. In wireless communication systems, the maximum information transfer distance is determined by the transmitter output power and the receiver sensitivity. The Fig. 1.1.2. shows the structure of a wireless communication system and how radio waves work and connect the various devices of the wireless communication network, namely transmitter, receiver and the radio path which is the medium that connects the two. In wireless communication systems, the maximum information transfer distance is determined by the transmitter output power and the receiver sensitivity. #gap-597448598 { padding-top: 10px; } Download Full-Text PDF Cite this Publication, X.Huo,Q. Wei, J.Chen, and X.Chen, A simple and robust low-complexity two-path receiver design based on joint phase rotation for OFDM systems, IEEE International Conference on Communications (ICC), Kuala Lumpur, Malaysia, May 12-17, 2009. In wireless communication, the improvement of the information rate on the channel due to diversity is the focus of many papers, which will contribute to the development of a better wireless communication system. M. Alamouti and A. Duel-Hallen presented the Alamouti coding, where they demonstrated an improvement of the bit rate (or coding rate) over two transmit antennas compared to a single transmit antenna. Based on Alamouti coding method, several coding and modulation methods such as 64QAM, 64 QAM-IMM and 256QAM-IMM are proposed and the coding rate and bit error rate performance is evaluated. In these coding and modulation methods, diversity order is fixed by the number of transmission branches. In this paper we propose another diversity method, where we dynamically change the diversity branches by selecting between any pair of transmission branches. The problem is formulated as a maximization problem and an optimal pair of transmission branches is chosen by this maximization problem. From the simulation results included on this paper, it can be seen that this diversity method provides better improvement in the link margin without wasting of much power and also its circuit is quite easy to design as in each time the receiver will select only one branch with highest signal to noise ratio. However this technique of selecting one branch at a time is not an optimal technique to enhance the channel impairments as the resultant signal to noise ratio is not the contribution of all the diversity branches therefore we have shown how maximal ratio combining can be implemented. 5ec8ef588b


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