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An efficient wireless switching architecture

机译:高效的无线交换架构

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We present a wireless switching architecture that allows a self-interference-free asynchronous packet communication in multi-channel wireless switching networks. We propose a system architecture to get around the self-interference problem, which arises due to the proximity among RF devices in the switch and the large difference in strengths between receiving and transmitting signals. We then present a straightforward solution of separating the frequency spectra used for receiving and transmitting signals and propose a MAC/PHY cross-layer protocol for efficiently managing the channel bandwidth for asynchronous packet-based communication. We show that, when a K-port wireless switch with each port providing 20MHz of bidirectional bandwidth, the total communication bandwidth can be increased to 1.4K×20MHz, which is about 2K times as high as a wireless access point with 20MHz per channel. Finally, we introduce a scheduling scheme with a dynamic load balancing to ensure global fairness for all users. The performance of our algorithm is compared to that of the Least-Loaded-First (LLF) user assignment policy using simulations.
机译:我们提出了一种无线交换体系结构,该体系结构允许在多通道无线交换网络中实现无干扰的异步分组通信。我们提出一种系统架构来解决自干扰问题,该问题是由于开关中RF设备之间的距离太近以及接收和发射信号之间的强度差异较大而引起的。然后,我们提出了一种分离用于接收和发送信号的频谱的简单解决方案,并提出了一种MAC / PHY跨层协议,以有效地管理基于异步数据包的通信的信道带宽。我们显示,当一个K端口无线交换机的每个端口提供20MHz的双向带宽时,总通信带宽可以增加到1.4K×20MHz,这大约是每个通道20MHz的无线接入点的2K倍。最后,我们引入了具有动态负载平衡的调度方案,以确保所有用户的全局公平性。使用模拟将我们算法的性能与最不优先加载(LLF)用户分配策略的性能进行比较。

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