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No Time to Countdown: Migrating Backoff to the Frequency Domain

机译:没有时间倒计时:将退避迁移到频域

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摘要

Conventional WiFi networks perform channel contention in time domain. This is known to be wasteful because the channel is forced to remain idle while all contending nodes are backing off for multiple time slots. This paper proposes to break away from convention and recreate the backing off operation in the frequency domain. Our basic idea leverages the observation that OFDM subcarriers can be treated as integer numbers. Thus, instead of picking a random backoff duration in time, a contending node can signal on a randomly chosen subcarrier. By employing a second antenna to listen to all the subcarriers, each node can determine whether its chosen integer (or subcarrier) is the smallest among all others. In fact, each node can even determine the rank of its chosen subcarrier, enabling the feasibility of scheduled transmissions after every round of contention. We develop these ideas into a Back2F protocol that migrates WiFi backoff to the frequency domain. Experiments on a prototype of 10 USRPs confirm feasibility, along with consistent throughput gains over 802.11. Trace based simulations affirm scalability to larger, real-world network topologies.
机译:常规的WiFi网络在时域中执行信道竞争。已知这是浪费的,因为在所有竞争节点都退避多个时隙的同时,强制信道保持空闲。本文提出了打破常规并在频域中重新创建退避操作的建议。我们的基本思想是利用将OFDM子载波视为整数的观察结果。因此,代替在时间上选择随机退避持续时间,竞争节点可以在随机选择的子载波上发信号。通过使用第二天线监听所有子载波,每个节点可以确定其选择的整数(或子载波)是否在所有其他子载波中最小。实际上,每个节点甚至可以确定其选择的子载波的等级,从而在每轮竞争之后都可以进行预定传输。我们将这些想法发展成为一种Back2F协议,该协议将WiFi补偿迁移到频域。在10个USRP的原型上进行的实验证实了可行性,并且在802.11上具有一致的吞吐量增长。基于跟踪的仿真确认了可扩展到更大的实际网络拓扑的能力。

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