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Coexistence Wi-Fi MAC Design for Mitigating Interference Caused by Collocated Bluetooth

机译:共存Wi-Fi MAC设计,可减轻蓝牙并置引起的干扰

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A non-collaborative coexistence mechanism for wireless-fidelity (Wi-Fi) and bluetooth (BT) systems based on dynamic packet fragmentation is proposed in this work. The basic idea is to adapt the packet length of Wi-Fi in the MAC layer such that the fragmented packet has a better chance to survive the interference from the nearby BT devices. We first develop an analytical model that specifies the information required by the Wi-Fi MAC layer to decide the best fragmentation strategy. Then, this model is extended to analyze the throughput and transmission delay of the Wi-Fi device. The analytical model is validated by computer simulation. Furthermore, it is demonstrated by simulation results that the proposed coexistence mechanism improves the performance of Wi-Fi in throughput and transmission delay significantly while relatively smaller performance improvement is observed for BT.
机译:在这项工作中,提出了一种基于动态数据包分段的无线保真(Wi-Fi)和蓝牙(BT)系统的非协作共存机制。基本思想是调整MAC层中Wi-Fi的数据包长度,以使分片的数据包具有更好的机会抵抗来自附近BT设备的干扰。我们首先开发一种分析模型,该模型指定Wi-Fi MAC层确定最佳分段策略所需的信息。然后,扩展该模型以分析Wi-Fi设备的吞吐量和传输延迟。通过计算机仿真验证了分析模型。此外,通过仿真结果表明,提出的共存机制在吞吐量和传输延迟方面显着提高了Wi-Fi的性能,而BT的性能却相对较小。

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