自适应子载波Nulling:在无线局域网中实现部分频谱共享

Xinyu Zhang, K. Shin
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引用次数: 42

摘要

新兴的WLAN标准已经纳入了从5MHz到160MHz的各种信道宽度,以匹配不同网络上不同的流量需求。不幸的是,当前的802.11 MAC/PHY并不是为可变宽度信道共存而设计的。重叠的窄带信道可能会阻塞整个宽带信道,导致频谱利用率严重不足,甚至导致宽带wlan的饥饿。当WLAN与多个正交WLAN部分重叠其信道时,也存在类似的危险。本文提出利用自适应子载波零化(ASN)来解决部分频谱共享问题。ASN建立在802.11 OFDM PHY的基础上,但允许无线电通过频谱片段或子带来感知、传输、检测和解码数据包。ASN发送器可以根据每个数据包调整其频谱使用,方法是去除邻近wlan使用的子频段,并通过剩余的空闲子频段发送数据包。ASN保留了802.11 CSMA/CA原语,同时允许用户争夺对每个子带的访问,并且可以通过频谱聚合机会地利用宽带信道的优点。我们已经在gnurradio /USRP平台上实施和评估了ASN。我们的实验结果表明,ASN可以实现与传统802.11相当的检测和解码性能。我们在ns-2中的详细仿真进一步表明,ASN极大地提高了多小区wlan频谱共享的效率和公平性。
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Adaptive Subcarrier Nulling: Enabling partial spectrum sharing in wireless LANs
Emerging WLAN standards have been incorporating a variety of channel widths ranging from 5MHz to 160MHz, in order to match the diverse traffic demands on different networks. Unfortunately, the current 802.11 MAC/PHY is not designed for the coexistence of variable-width channels. Overlapping narrowband channels may block an entire wide-band channel, resulting in severe spectrum underutilization and even starvation of WLANs on the wide-band. A similar peril exists when a WLAN partially overlaps its channel with multiple orthogonal WLANs. In this paper, we propose to solve the problem of partial spectrum sharing using Adaptive Subcarrier Nulling (ASN). ASN builds on the 802.11 OFDM PHY, but allows the radios to sense, transmit, detect, and decode packets through spectrum fragments, or subbands. An ASN transmitter can adapt its spectrum usage on a per-packet basis, by nulling the subbands used by neighboring WLANs, and sending packets through the remaining idle subbands. ASN preserves the 802.11 CSMA/CA primitives while allowing users to contend for access to each subband, and can opportunistically exploit the merits of wide-band channels via spectrum aggregation. We have implemented and evaluated ASN on the GNURadio/USRP platform. Our experimental results have shown ASN to achieve detection and decoding performance comparable to the legacy 802.11. Our detailed simulation in ns-2 further shows that ASN substantially improves the efficiency and fairness of spectrum sharing for multi-cell WLANs.
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