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Dynamic transmit-power control for WiFi access points based on wireless link occupancy

机译:基于无线链路占用率的WiFi接入点动态发射功率控制

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Dynamic transmit-power control (DTPC) is critical to improve spectral efficiency and reduce interference in wireless local area networks (WLANs). DTPC schemes typically use signal-to-noise-ratio (SNR) information and require exchange of information between transmitters and receivers. However, that is not always easy to implement in actual WLAN deployments. In this paper, we present a simple but novel DTPC scheme for 802.11n Access Points (AP). The method, which is run by each AP without exchanging signaling information with other APs and associated Stations (STA), seeks for transmitting with the minimum power provided that the link is not overloaded. In lieu of using the SNR at the receiver side, the power is adapted based on the wireless link occupancy (rate load). As a result, no signaling exchange between stations and the AP is required. Reducing the transmit-power reduces both co-channel and adjacent channel interference and, hence, entails benefits for all nearby WLANs. The DTPC scheme was tested in a simulator and implemented in an actual 802.11n deployment, which confirmed the theoretical benefits.
机译:动态发射功率控制(DTPC)对于提高频谱效率和减少无线局域网(WLAN)中的干扰至关重要。 DTPC方案通常使用信噪比(SNR)信息,并要求在发射器和接收器之间交换信息。但是,在实际的WLAN部署中并不总是那么容易实现。在本文中,我们为802.11n接入点(AP)提出了一种简单而新颖的DTPC方案。该方法由每个AP运行,而不与其他AP和关联的站(STA)交换信令信息,该方法在链路未过载的情况下以最小的功率进行传输。代替在接收器端使用SNR,根据无线链路占用率(速率负载)调整功率。结果,不需要站与AP之间的信令交换。降低发射功率既减少了同信道干扰,又减少了相邻信道干扰,因此,对所有附近的WLAN都有好处。 DTPC方案在模拟器中进行了测试,并在实际的802.11n部署中实现,这证实了理论上的好处。

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