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How Does Multiple-Packet Reception Capability Scale the Performance of Wireless Local Area Networks?

机译:多分组接收能力如何扩展无线局域网的性能?

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Due to its simplicity and cost efficiency, wireless local area network (WLAN) enjoys unique advantages in providing high-speed and low-cost wireless services in hot spots and indoor environments. Traditional WLAN medium-access-control (MAC) protocols assume that only one station can transmit at a time: simultaneous transmissions of more than one station cause the destruction of all packets involved. By exploiting recent advances in PHY-layer multiuser detection (MUD) techniques, it is possible for a receiver to receive multiple packets simultaneously. This paper argues that such multipacket reception (MPR) capability can greatly enhance the capacity of future WLANs. In addition, the paper provides the MAC-layer and PHY-layer designs needed to achieve the improved capacity. First, to demonstrate MPR as a powerful capacity-enhancement technique, we prove a "superlinearityȁD; result, which states that the system throughput per unit cost increases as the MPR capability increases. Second, we show that the commonly deployed binary exponential backoff (BEB) algorithm in today''s WLAN MAC may not be optimal in an MPR system, and the optimal backoff factor increases with the MPR capability, the number of packets that can be received simultaneously. Third, based on the above insights, we design a joint MAC-PHY layer protocol for an IEEE 802.11-like WLAN that incorporates advanced PHY-layer signal processing techniques to implement MPR.
机译:由于其简单性和成本效率,无线局域网(WLAN)在热点和室内环境中提供高速和低成本无线服务方面享有独特优势。传统的WLAN介质访问控制(MAC)协议假设一次只能发送一个站:多个站的同时传输会破坏所有涉及的数据包。通过利用PHY层多用户检测(MUD)技术的最新进展,接收机可以同时接收多个数据包。本文认为,这种多数据包接收(MPR)功能可以大大增强未来WLAN的容量。此外,本文还提供了实现更高容量所需的MAC层和PHY层设计。首先,为了证明MPR是一种强大的容量增强技术,我们证明了“超线性ȁD;结果,该结果表明,随着MPR能力的提高,每单位成本的系统吞吐量会增加。其次,我们证明了常用的二进制指数退避(BEB) )在当今的WLAN MAC中,算法可能并非在MPR系统中是最佳的,并且最佳退避因数随MPR能力,可同时接收的数据包数量而增加。第三,基于以上见解,我们设计了一种类似于IEEE 802.11的WLAN的联合MAC-PHY层协议,该协议结合了先进的PHY层信号处理技术以实现MPR。

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