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Multi-Dimensional Busy-Tone Arbitration for OFDMA Random Access in IEEE 802.11ax

机译:IEEE 802.11AX中OFDMA随机访问的多维忙音调仲裁

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IEEE 802.11ax has adopted orthogonal frequency division multiple access (OFDMA) to support multi-user (MU) transmissions. There exist two uplink MU OFDMA access methods in IEEE 802.11ax. The first one is uplink OFDMA random access (UORA) in which stations randomly select resource units (RUs) to send physical protocol data units (PPDUs), so its access efficiency is low. The second one is uplink OFDMA nonrandom access (UONRA) in which the access point (AP) schedules MU transmissions based on buffer status reports (BSR) from stations. However, stations usually rely on UORA to send BSRs, so the low efficiency of UORA can be a bottleneck of UONRA. Thus, UORA needs to be renovated to improve the performance of itself and UONRA. To this end, a multi-dimensional busy-tone arbitration (MBTA) mechanism is developed in this paper to reduce collisions among stations contending the same RU. Since there lacks an algorithm in IEEE 802.11ax to support coexistence of UORA and UONRA, a dynamic access-method selection (DAMS) algorithm is designed for the AP and stations to choose an optimal access method. Both MBTA and DAMS are analyzed rigorously and are further validated via simulations. The analytical and simulation results show that: 1) The MBTA dramatically improves the access efficiency of UORA; 2) DAMS always achieves a higher throughput than both UORA and UONRA.
机译:IEEE 802.11ax采用正交频分多址(OFDMA)来支持多用户(MU)传输。 IEEE 802.11AX中存在两个上行链路MU OFDMA访问方法。第一个是上行链路OFDMA随机接入(UORA),其中站随机选择资源单元(RUS)来发送物理协议数据单元(PPDU),因此其访问效率低。第二个是上行链路OFDMA非谐波访问(UONRA),其中接入点(AP)根据来自站的缓冲状态报告(BSR)来调度MU传输。然而,车站通常依赖于UORA发送BSR,因此UORA的低效率可以是UONRA的瓶颈。因此,需要翻新UORA以改善自身和uonra的性能。为此,在本文中开发了多维繁忙音调仲裁(MBTA)机制,以减少毗邻同一RU的站的碰撞。由于IEEE 802.11ax中缺少算法来支持UORA和UONRA的共存,因此动态访问方法选择(DAMS)算法专为AP和站选择最佳访问方法而设计。严格分析MBTA和水坝,并通过模拟进一步验证。分析和仿真结果表明:1)MBTA显着提高了UORA的访问效率; 2)大坝总是达到比UORA和UONRA更高的吞吐量。

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