基于ofdm的无线局域网能量感知无线链路控制

B. Bougard, S. Pollin, G. Lenoir, L. V. D. Perre, F. Catthoor, Wim Dehaene
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引用次数: 5

摘要

下一代无线局域网(WLAN)终端必须满足日益增长的性能要求,而能源预算越来越受到可移植性的限制。除了低功耗电路和架构设计之外,系统级电源管理是填补这一空白的关键技术。最近,无线电链路控制技术被提出,不仅作为一种最大化性能的方式,而且达到能源意识。传输速率和功率的调整,以满足用户的要求,同时最大限度地减少平均功耗。然而,目前提出的方案并没有利用最新WLAN标准中考虑的特定调制方案的特征:正交频分复用(OFDM)。在本文中,我们设计了一种实用的能量感知无线电链路控制方案,该方案针对OFDM收发器进行了优化,并与现行标准兼容。仿真结果显示,与吞吐量最大化方案相比,收发器功耗降低高达80%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy-aware radio link control for OFDM-based WLAN
Next generation wireless local area network (WLAN) terminals have to cope with increasing performance requirements while energy budgets are more and more constrained by portability. Next to low power circuit and architecture design, system-level power management is a key technology to fill this gap. Recently, radio link control techniques have been proposed, not only as a way to maximize performance but also to reach energy awareness. Transmit rate and power are adapted to meet exactly the user requirements while minimizing the average power consumption. However, schemes proposed so far do not exploit the characteristics of the specific modulation scheme considered in most recent WLAN standards: orthogonal frequency division multiplexing (OFDM). In this paper, we design a practical energy aware radio link control scheme, optimized for OFDM transceivers and compatible with current standards. Simulation results depict up to 80% transceiver power reduction when compared with throughput maximizing schemes.
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