IEEE 802.11干扰管理中报文检测灵敏度的副作用研究

L. Scalia, J. Widmer, I. Aad
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引用次数: 14

摘要

干扰管理是CSMA/CA协议中最关键的操作之一。在本文中,我们研究了为减轻干扰影响而设计的特定物理层操作如何导致无线电接收器电路高估信道占用状态,从而不必要地限制了整体空间重用或阻碍了传入帧的同步。我们在WLAN PHY的整个数据包检测过程的惊人有效性中个性化了这个问题的根源,它允许对强烈衰减的802.11帧进行解调。IEEE 802.11标准的发射频谱掩码允许相邻信道上有限的功率泄漏。当前的OFDM/CCK接收电路能否正确识别如此低功率的相邻信道信号,对无线局域网的性能有重要影响。每当在部分重叠信道上发生传输的帧捕获时,接收方可能会错过预定给它的数据包的接收。在传输阶段也会发生类似的效果。在载波感知模式下,WLAN设备的OFDM/CCK接收器能够同步到低信噪比信号的前导,从而在部分重叠信道上传输时不必要地延迟信道访问。
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On the side effects of packet detection sensitivity in IEEE 802.11 interference management
Interference management is one of the most critical operations for CSMA/CA protocols. In this paper we investigate how specific PHY-layer operations, designed to mitigate the effect of interference, can cause the radio-receiver circuitry to over-estimate the channel occupation status, thus unnecessarily limiting the overall spatial reuse or impeding the synchronization to incoming frames. We individuated the root of this problem in the surprising effectiveness of the overall packet detection procedure of WLAN PHY, which allows for the demodulation of strongly attenuated 802.11 frames. The transmit spectrum mask for the IEEE 802.11 standard allows limited power leakage over adjacent channels. Such a low power signal from adjacent channels nowadays can be correctly recognized by recent OFDM/CCK receive circuitry, which has an important impact on WLAN performance. A receiver may miss the reception of packets destined to it, whenever a frame capture of a transmission on a partially overlapping channel occurs. A similar effect occurs in the transmit phase. In carrier sense mode, the OFDM/CCK receiver of the WLAN device is capable of synchronizing to the preamble of low SNR signals, thus unnecessarily deferring the channel access in case of transmissions on partially overlapping channels.
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