This paper proposes a new power allocation technique to jointly optimize link-layer energy efficiency (EE) and effective capacity (EC) of a Rayleigh flat-fading channel with delay-outage probability constraints. Specifically, EE is formulated as the ratio of EC to the sum of transmission power and rate-independent circuit power consumption. A multi-objective optimization problem (MOP) to jointly maximize EE and EC is then formulated. By introducing importance weight into the MOP, we can flexibly change the priority level of EE and EC, and convert the MOP into a single-objective optimization problem (SOP) which can be solved using fractional programming. At first, for a given importance weight and a target delay-outage probability, the optim...
This paper proposes a joint energy efficiency (EE) and spectrum efficiency (SE) tradeoff analysis as...
This paper proposes a joint energy efficiency (EE) and spectrum efficiency (SE) tradeoff analysis as...
In this paper, we maximize the parameterized energy efficiency (EEP) of a multi-channel fading commu...
This paper proposes a new power allocation technique to jointly optimize link-layer energy efficienc...
A joint energy and spectral efficient power allocation strategy for a point-to-point multi-carrier l...
A joint optimization problem of link-layer energy efficiency (EE) and effective capacity (EC) in a N...
A joint optimization problem of link-layer energy efficiency (EE) and effective capacity (EC) in a N...
This paper presents the three-fold energy, rate and delay tradeoff in mobile multimedia fading chann...
This paper presents a delay-QoS-driven spectrum and energy efficiency optimization transmission tech...
This paper presents an energy-efficient power allocation for a multicarrier link over a frequency-se...
This paper presents an optimal energy-efficient power allocation scheme for a point-to-point multica...
In this paper, the total system effective capacity (EC) maximization problem for the uplink transmis...
This paper presents the three-fold energy, rate and delay tradeoff in mobile multimedia fading chann...
This paper proposes a new power allocation scheme to jointly optimize energy efficiency (EE) and spe...
In this paper, we obtain an energy-efficient power allocation technique for a Rayleigh block-fading ...
This paper proposes a joint energy efficiency (EE) and spectrum efficiency (SE) tradeoff analysis as...
This paper proposes a joint energy efficiency (EE) and spectrum efficiency (SE) tradeoff analysis as...
In this paper, we maximize the parameterized energy efficiency (EEP) of a multi-channel fading commu...
This paper proposes a new power allocation technique to jointly optimize link-layer energy efficienc...
A joint energy and spectral efficient power allocation strategy for a point-to-point multi-carrier l...
A joint optimization problem of link-layer energy efficiency (EE) and effective capacity (EC) in a N...
A joint optimization problem of link-layer energy efficiency (EE) and effective capacity (EC) in a N...
This paper presents the three-fold energy, rate and delay tradeoff in mobile multimedia fading chann...
This paper presents a delay-QoS-driven spectrum and energy efficiency optimization transmission tech...
This paper presents an energy-efficient power allocation for a multicarrier link over a frequency-se...
This paper presents an optimal energy-efficient power allocation scheme for a point-to-point multica...
In this paper, the total system effective capacity (EC) maximization problem for the uplink transmis...
This paper presents the three-fold energy, rate and delay tradeoff in mobile multimedia fading chann...
This paper proposes a new power allocation scheme to jointly optimize energy efficiency (EE) and spe...
In this paper, we obtain an energy-efficient power allocation technique for a Rayleigh block-fading ...
This paper proposes a joint energy efficiency (EE) and spectrum efficiency (SE) tradeoff analysis as...
This paper proposes a joint energy efficiency (EE) and spectrum efficiency (SE) tradeoff analysis as...
In this paper, we maximize the parameterized energy efficiency (EEP) of a multi-channel fading commu...