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首页> 外文期刊>Communications Letters, IEEE >IAPS: Interference Aware Power Saving for High-Efficiency Wireless LANs in Dense Networks
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IAPS: Interference Aware Power Saving for High-Efficiency Wireless LANs in Dense Networks

机译:IAPS:密集网络中高效无线局域网的干扰感知节能

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Battery-driven circuit design for power saving wireless local area networks (WLANs) has become more and more important because mobile devices and applications are required to support high throughput in wide service coverage and, at the same time, exhibit long battery lifetime. However, in dense networks, multiple and dynamic channel access leads to a higher probability of co-channel and adjacent channel interference. Therefore, the energy efficiency of IEEE 802.11-based WLANs is severely degraded by such interference. In this letter, an interference-aware power saving (IAPS) mechanism is proposed. The IAPS incorporates a signal quality and interference measurement process for determining link quality based on the incoming signal from a receiver. In the IAPS, the signal field decoding process is used to determine the required link quality for the received signal, and a physical layer power saving control based on the estimated link quality and the required link quality is implemented. The proposed IAPS technique achieves 29% and 26% average energy efficiency improvement over the conventional scheme and the channel hopping scheme, respectively.
机译:节能无线局域网(WLAN)的电池驱动电路设计变得越来越重要,因为要求移动设备和应用程序在广泛的服务范围内支持高吞吐量,同时具有较长的电池寿命。但是,在密集的网络中,多信道和动态信道访问导致同信道和相邻信道干扰的可能性更高。因此,基于IEEE 802.11的WLAN的能量效率由于这种干扰而严重降低。在这封信中,提出了一种干扰感知节能(IAPS)机制。 IAPS包含信号质量和干扰测量过程,用于根据来自接收器的输入信号确定链路质量。在IAPS中,信号场解码过程用于确定接收信号所需的链路质量,并基于估计的链路质量和所需的链路质量实施物理层节能控制。所提出的IAPS技术分别比传统方案和信道跳变方案分别实现29%和26%的平均能效提高。

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