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A fuzzy approach for power savings in both infrastructure and ad hoc WLANs

机译:基础设施和临时WLAN中节能的模糊方法

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Energy efficiency is a main issue in a wireless local area network. Reducing energy consumption lowers the environmental impact of the network and it prolongs the lifetime of the devices, which are usually powered by means of batteries. The basic mechanisms for energy savings specified in the IEEE 802.11 standard are transmit power control, which directly affects the energy cost of the communication, and alternation of awake and sleep states, as the battery consumption in sleep state is negligible. However, low transmission power and long sleeping time reduce the message success rate and the responsiveness of the network. This paper presents a fuzzy logic solution for dynamically adjusting both transmission power and sleeping time in an IEEE 802.11 wireless network. The proposed approach is validated through simulations, which show a battery life 20% longer than other state-of-the-art approaches, and by means of a real testbed, which confirms the simulated results.
机译:能效是无线局域网中的主要问题。 降低能耗降低了网络的环境影响,并且它延长了设备的寿命,这些设备通常通过电池供电。 IEEE 802.11标准中规定的节能的基本机制是传输功率控制,其直接影响通信的能量成本,以及睡眠状态下的电池消耗可以忽略不计的唤醒和睡眠状态的交替。 但是,低传输功率和长休眠时间减少了消息成功率和网络的响应性。 本文介绍了一种模糊逻辑解决方案,用于在IEEE 802.11无线网络中动态调整传输功率和休眠时间。 通过模拟验证所提出的方法,该模拟显示了比其他最先进的方法长20%的电池寿命,并通过真正的试验台,这是确认模拟结果的实际测试。

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