Channel quality indicator (CQI) feedback in long-term evolution (LTE) system is an essential technique in describing the instantaneous channel state information. The CQI calculations highly depend on the accuracy of the channel estimation process in order to assign appropriate modulation and coding scheme. However, one of the critical issues affecting the LTE system performance is obtaining the CQI for each transmission period which will inevitably cost many resources. Therefore, an appropriate method for reducing CQI feedback overhead along with accurate channel estimation technique is required to manage the allocated resources and obtains significant improvements in system performance. In this paper, an adaptive threshold feedback compres...
Frequency-domain scheduling and rate adaptation enable next-generation orthogonal frequency-division...
Abstract3GPP UMTS Long Term Evolution (LTE) requires the calculation of three different feedback val...
Frequency-domain scheduling, multiple antenna techniques, and rate adaptation enable next generation...
The huge demands for mobile wireless data traffics are increasing rapidly during the recent years. L...
The channel quality indicator (CQI) feedback is an essential technique in describing channel state i...
The frequency domain scheduling gain can be maximized when precise channel information is available ...
The frequency domain scheduling gain can be maximized when precise channel information is available ...
In Multi User-Multiple-in Multiple-Out - Long Term Evolution (MU-MIMO-LTE) networks, Channel Quality...
The fast fading channel produced by the fast user mobility requires a powerful channel estimation to...
Frequency-domain scheduling and rate adaptation enable next generation wireless cellular systems suc...
Multiple-in multiple-out (MIMO) in long-term evolution (LTE) is an essential factor in achieving hig...
Abstract—Frequency-domain scheduling and rate adaptation enable next generation wireless cellular sy...
The continuous growth in wireless communication demands has led to a rapid increase in energy consum...
Robust service can be achieved in error prone Long Term Evolution-Advanced (LTE-A) by dealing with ...
Opportunistic frequency-domain scheduling and link adaptation enable the long term evolution (LTE) c...
Frequency-domain scheduling and rate adaptation enable next-generation orthogonal frequency-division...
Abstract3GPP UMTS Long Term Evolution (LTE) requires the calculation of three different feedback val...
Frequency-domain scheduling, multiple antenna techniques, and rate adaptation enable next generation...
The huge demands for mobile wireless data traffics are increasing rapidly during the recent years. L...
The channel quality indicator (CQI) feedback is an essential technique in describing channel state i...
The frequency domain scheduling gain can be maximized when precise channel information is available ...
The frequency domain scheduling gain can be maximized when precise channel information is available ...
In Multi User-Multiple-in Multiple-Out - Long Term Evolution (MU-MIMO-LTE) networks, Channel Quality...
The fast fading channel produced by the fast user mobility requires a powerful channel estimation to...
Frequency-domain scheduling and rate adaptation enable next generation wireless cellular systems suc...
Multiple-in multiple-out (MIMO) in long-term evolution (LTE) is an essential factor in achieving hig...
Abstract—Frequency-domain scheduling and rate adaptation enable next generation wireless cellular sy...
The continuous growth in wireless communication demands has led to a rapid increase in energy consum...
Robust service can be achieved in error prone Long Term Evolution-Advanced (LTE-A) by dealing with ...
Opportunistic frequency-domain scheduling and link adaptation enable the long term evolution (LTE) c...
Frequency-domain scheduling and rate adaptation enable next-generation orthogonal frequency-division...
Abstract3GPP UMTS Long Term Evolution (LTE) requires the calculation of three different feedback val...
Frequency-domain scheduling, multiple antenna techniques, and rate adaptation enable next generation...