[[abstract]]In this paper, we study integrated base-station assignment, diversity, and power control (IBDP) and show that the optimal base-station assignment and the optimal feasible power can be obtained by solving a set of equations. A signal-to-interference-and-noise ratio (SINR) feedback-based algorithm, which is not limited by the initial base-station assignment and can meet the power constraint at all times, is proposed to solve this set of equations in a distributed manner. It is proven that the proposed algorithm can converge to the optimal base-station assignment and the optimal feasible power, which result in the maximal probability of feasibility and the minimal power consumption. In addition, it is shown that the proposed algori...
[[abstract]]In this paper, we study the power control for the adaptive rate system that adapts the d...
Abstract—This paper solves the joint power control and SIR assignment problem through distributed al...
[[abstract]]We propose in this paper an efficient method to derive the optimal feasible power and we...
[[abstract]]In this paper, we study integrated base-station assignment, diversity, and power control...
[[abstract]]An integrated base station assignment, diversity and power control algorithm is proposed...
[[abstract]]An integrated base station assignment, diversity and power control algorithm is proposed...
[[abstract]]An integrated base station assignment, diversity and power control algorithm is proposed...
[[abstract]]A distributed algorithm that uses the MVDR (minimum variance distortionless response) co...
[[abstract]]This paper aims to derive the optimal feasible power and weight for the wireless network...
[[abstract]]This paper aims to derive the optimal feasible power and weight for the wireless network...
We introduce a two-loop power control that allows an efficient use of the overall power resources fo...
[[abstract]]A distributed algorithm that uses the MVDR (minimum variance distortionless response) co...
Copyright © 2014 Daniel U. Campos-Delgado et al. This is an open access article distributed under th...
[[abstract]]In this paper, we study the power control for the adaptive rate system that adapts the d...
In this paper, we address power control in a wireless cellular network where multiple mobile users a...
[[abstract]]In this paper, we study the power control for the adaptive rate system that adapts the d...
Abstract—This paper solves the joint power control and SIR assignment problem through distributed al...
[[abstract]]We propose in this paper an efficient method to derive the optimal feasible power and we...
[[abstract]]In this paper, we study integrated base-station assignment, diversity, and power control...
[[abstract]]An integrated base station assignment, diversity and power control algorithm is proposed...
[[abstract]]An integrated base station assignment, diversity and power control algorithm is proposed...
[[abstract]]An integrated base station assignment, diversity and power control algorithm is proposed...
[[abstract]]A distributed algorithm that uses the MVDR (minimum variance distortionless response) co...
[[abstract]]This paper aims to derive the optimal feasible power and weight for the wireless network...
[[abstract]]This paper aims to derive the optimal feasible power and weight for the wireless network...
We introduce a two-loop power control that allows an efficient use of the overall power resources fo...
[[abstract]]A distributed algorithm that uses the MVDR (minimum variance distortionless response) co...
Copyright © 2014 Daniel U. Campos-Delgado et al. This is an open access article distributed under th...
[[abstract]]In this paper, we study the power control for the adaptive rate system that adapts the d...
In this paper, we address power control in a wireless cellular network where multiple mobile users a...
[[abstract]]In this paper, we study the power control for the adaptive rate system that adapts the d...
Abstract—This paper solves the joint power control and SIR assignment problem through distributed al...
[[abstract]]We propose in this paper an efficient method to derive the optimal feasible power and we...