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Energy-Efficient Resource Allocation for NOMA-Assisted Uplink Pinching-Antenna Systems

Published: May 12, 2025 | arXiv ID: 2505.07555v1

By: Ming Zeng , Xingwang Li , Ji Wang and more

Potential Business Impact:

Saves phone battery by better antenna placement.

Business Areas:
Energy Management Energy

The pinching-antenna architecture has emerged as a promising solution for reconfiguring wireless propagation environments and enhancing system performance. While prior research has primarily focused on sum-rate maximization or transmit power minimization of pinching-antenna systems, the critical aspect of energy efficiency (EE) has received limited attention. Given the increasing importance of EE in future wireless communication networks, this work investigates EE optimization in a non-orthogonal multiple access (NOMA)-assisted multi-user pinching-antenna uplink system. The problem entails the joint optimization of the users' transmit power and the pinching-antenna position. The resulting optimization problem is non-convex due to tightly coupled variables. To tackle this, we employ an alternating optimization framework to decompose the original problem into two subproblems: one focusing on power allocation and the other on antenna positioning. A low-complexity optimal solution is derived for the power allocation subproblem, while the pinching-antenna positioning subproblem is addressed using a particle swarm optimization algorithm to obtain a high-quality near-optimal solution. Simulation results demonstrate that the proposed scheme significantly outperforms both conventional-antenna configurations and orthogonal multiple access-based pinching-antenna systems in terms of EE.

Country of Origin
🇨🇳 🇨🇦 Canada, China

Page Count
5 pages

Category
Computer Science:
Information Theory