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Developing an asynchronous NoAck-based full-duplex MAC for IEEE 802.11 networks in a systems approach

机译:在系统方法中开发用于IEEE 802.11网络的异步Noack的全双工MAC

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摘要

Many studies have introduced full-duplex (FD) medium access controls (MAC) in wireless networks that realize the physical FD capability of the latest devices. However, practical experiences with 802.11 wireless LANs (WLANs) have not yet been addressed. This study proposes a novel FD MAC that extends the IEEE 802.11 based on no acknowledgment (NoAck) data transmission. Because ACK is not needed after data transmission, the MAC can be purely asynchronous; there is neither overhead required for synchronizing transmission, such as request-to-send/clear-to-send (RTS/CTS) handshaking, nor wasted time even in asymmetric traffic. The proposed MAC also provides access point (AP) initiated uni-directional full-duplex (AP-initiated UFD) transmission, which has mostly not been supported in practice, by extending the carrier sense condition. An approximated collision avoidance method is also introduced, where a CTS frame without a preceding RTS is transmitted by AP using FD capability to protect the frame being received. A prototype of the proposed MAC is implemented in ns-3 network simulator, and extensive simulation experiments are conducted in various test setups to validate the correct MAC behaviors, performance improvement, and fairness. The results show that performance improvements, more than twice as high under favorable conditions, are possible while maintaining interoperability with legacy devices.
机译:许多研究引入了在实现最新设备的物理FD功能的无线网络中的全双工(FD)介质访问控制(MAC)。但是,尚未解决802.11无线局域网(WLAN)的实用经验。本研究提出了一种基于没有确认(NOACK)数据传输的新型FD MAC,其扩展IEEE 802.11。由于数据传输后不需要ACK,因此MAC可以纯粹异步;同步传输既没有开销,例如请求 - 发送/清除发送(RTS / CTS)握手,也不在不对称流量中浪费时间。所提出的MAC还提供接入点(AP)启动的单向全双工(AP启动的UFD)传输,通过扩展载波检测条件,主要不受实践中的实际支持。还引入了近似的碰撞避免方法,其中使用FD能力通过AP发送没有先前RT的CTS帧以保护接收的帧。所提出的MAC的原型是在NS-3网络模拟器中实现的,并且在各种测试设置中进行了广泛的仿真实验,以验证正确的MAC行为,性能提高和公平性。结果表明,在有利条件下的性能提高,在有利条件下的两倍多,同时保持与传统设备的互操作性。

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