A systematic approach to solve seemingly nonconvex resource allocation problems in wireless cellular networks is studied in this paper. By revealing and exploiting the hidden convexity in the problem formulations, we obtain solutions that can tackle a variety of objective functions, provide robustness to resource allocations such as power, and be obtained often through distributed algorithms. The advantages of such flexibility and robustness are demonstrated through comparisons with the state-of-the-art in recent research literature. First we show how to distributively solve a variety of resource allocation problems in FDMA and interference limited CDMA channels with quality of service constraints, such as meeting minimum queueing delay or ...
Dynamic power control and scheduling strategies provide efficient mechanisms for improving the perfo...
We present a linear-programming approach for dynamic load balancing in CDMA networks. The linear pro...
In the seminal paper by Foschini and Miljanic in 1993, a distributed power control algorithm was dev...
In the past few years, utility and optimization based resource allocation problems have been studied...
This book presents state-of-the-art research on robust resource allocation in current and future wir...
Efficient design of online power allocation policies relies strongly on convex-analytic and optimiza...
Abstract—Accurate power control is an essential requirement in the design of cellular code-division ...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
The continuously growing number of applications competing for resources in current communication ne...
Abstract—The continuously increasing demand for resources in modern, both wired and wireless, commun...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
Abstract — We consider a scheduled orthogonal frequency di-vision multiplexed (OFDM) wireless cellul...
Device-to-device (D2D) communication is considered one of the key frameworks to provide suitable sol...
Dynamic power control and scheduling strategies provide efficient mechanisms for improving the perfo...
We present a linear-programming approach for dynamic load balancing in CDMA networks. The linear pro...
In the seminal paper by Foschini and Miljanic in 1993, a distributed power control algorithm was dev...
In the past few years, utility and optimization based resource allocation problems have been studied...
This book presents state-of-the-art research on robust resource allocation in current and future wir...
Efficient design of online power allocation policies relies strongly on convex-analytic and optimiza...
Abstract—Accurate power control is an essential requirement in the design of cellular code-division ...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
The continuously growing number of applications competing for resources in current communication ne...
Abstract—The continuously increasing demand for resources in modern, both wired and wireless, commun...
This paper investigates the joint optimization of time allocation and transmit power in wireless-pow...
Abstract — We consider a scheduled orthogonal frequency di-vision multiplexed (OFDM) wireless cellul...
Device-to-device (D2D) communication is considered one of the key frameworks to provide suitable sol...
Dynamic power control and scheduling strategies provide efficient mechanisms for improving the perfo...
We present a linear-programming approach for dynamic load balancing in CDMA networks. The linear pro...
In the seminal paper by Foschini and Miljanic in 1993, a distributed power control algorithm was dev...