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Resource management for OFDMA based next generation 802.11 WLANs

机译:基于OFDMA的下一代802.11 WLAN的资源管理

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Recently, IEEE 802.11ax Task Group has adapted OFDMA as a new technique for enabling multi-user transmission. It has been also decided that the scheduling duration should be same for all the users in a multi-user OFDMA so that the transmission of the users should end at the same time. In order to realize that condition, the users with insufficient data should transmit null data (i.e. padding) to fill the duration. While this scheme offers strong features such as resilience to Overlapping Basic Service Set (OBSS) interference and ease of synchronization, it also poses major side issues of degraded throughput performance and waste of devices' energy. In this work, for OFDMA based 802.11 WLANs we first propose practical algorithm in which the scheduling duration is fixed and does not change from time to time. In the second algorithm the scheduling duration is dynamically determined in a resource allocation framework by taking into account the padding overhead, airtime fairness and energy consumption of the users. We analytically investigate our resource allocation problems through Lyapunov optimization techniques and show that our algorithms are arbitrarily close to the optimal performance at the price of reduced convergence rate. We also calculate the overhead of our algorithms in a realistic setup and propose solutions for the implementation issues.
机译:最近,IEEE 802.11ax任务组已将OFDMA用作使多用户传输成为可能的新技术。还已经决定,对于多用户OFDMA中的所有用户,调度持续时间应当相同,从而用户的传输应当同时结束。为了实现该条件,数据不足的用户应发送空数据(即填充)以填充持续时间。尽管此方案提供了强大的功能,例如可抵抗重叠的基本服务集(OBSS)干扰,并且易于同步,但它也带来了主要问题,即吞吐量性能下降和设备能量浪费。在这项工作中,对于基于OFDMA的802.11 WLAN,我们首先提出实用的算法,其中调度持续时间是固定的,并且不会不时变化。在第二种算法中,调度持续时间是在资源分配框架中通过考虑填充开销,通话时间公平性和用户的能源消耗来动态确定的。我们通过Lyapunov优化技术分析性地研究了我们的资源分配问题,并表明我们的算法以降低的收敛速度为代价,任意接近最佳性能。我们还计算了实际设置中算法的开销,并提出了实现问题的解决方案。

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