Energy-Efficient Resource Allocation in Multiuser OFDM Systems with Wireless Information and Power Transfer
arXiv:1212.3638 · doi:10.1109/WCNC.2013.6555184
Abstract
In this paper, we study the resource allocation algorithm design for multiuser orthogonal frequency division multiplexing (OFDM) downlink systems with simultaneous wireless information and power transfer. The algorithm design is formulated as a non-convex optimization problem for maximizing the energy efficiency of data transmission (bit/Joule delivered to the users). In particular, the problem formulation takes into account the minimum required system data rate, heterogeneous minimum required power transfers to the users, and the circuit power consumption. Subsequently, by exploiting the method of time-sharing and the properties of nonlinear fractional programming, the considered non-convex optimization problem is solved using an efficient iterative resource allocation algorithm. For each iteration, the optimal power allocation and user selection solution are derived based on Lagrange dual decomposition. Simulation results illustrate that the proposed iterative resource allocation algorithm achieves the maximum energy efficiency of the system and reveal how energy efficiency, system capacity, and wireless power transfer benefit from the presence of multiple users in the system.
6 pages. The paper has been accepted for publication at the IEEE Wireless Communications and Networking Conference (WCNC) 2013, Shanghai, China, Apr. 2013
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- Simultaneous Wireless Information and Power Transfer Under Different CSI Acquisition Schemes
- Power Splitting for Full-Duplex Relay with Wireless Information and Power Transfer
- Relay Control for Full-Duplex Relaying with Wireless Information and Energy Transfer
- Resource Allocation for Simultaneous Wireless Information and Power Transfer Systems: A Tutorial Overview
- Resource Allocation for SWIPT in Multi-Service Wireless Networks
- Outage Analysis and Optimization for Time Switching-based Two-Way Relaying with Energy Harvesting Relay Node