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A Reliable Data Transmission Model for IEEE 802.15.4e Enabled Wireless Sensor Network under WiFi Interference

机译:WiFi干扰下支持IEEE 802.15.4e的无线传感器网络的可靠数据传输模型

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The IEEE 802.15.4e standard proposes Medium Access Control (MAC) to support collision-free wireless channel access mechanisms for industrial, commercial and healthcare applications. However, unnecessary wastage of energy and bandwidth consumption occur due to inefficient backoff management and collisions. In this paper, a new channel access mechanism is designed for the buffer constraint sensor devices to reduce the packet drop rate, energy consumption and collisions. In order to avoid collision due to the hidden terminal problem, a new frame structure is designed for the data transmission. A new superframe structure is proposed to mitigate the problems due to WiFi and ZigBee interference. A modified superframe structure with a new retransmission opportunity for failure devices is proposed to reduce the collisions and retransmission delay with high reliability. Performance evaluation and validation of our scheme indicate that the packet drop rate, throughput, reliability, energy consumption and average delay of the nodes can be improved significantly.
机译:IEEE 802.15.4e标准提出了媒体访问控制(MAC),以支持用于工业,商业和医疗保健应用的无冲突无线信道访问机制。但是,由于效率低下的退避管理和冲突而导致不必要的能量和带宽消耗浪费。在本文中,为缓冲区约束传感器设备设计了一种新的通道访问机制,以降低数据包丢失率,能耗和冲突。为了避免由于隐藏终端问题引起的冲突,为数据传输设计了一种新的帧结构。提出了一种新的超帧结构来减轻由于WiFi和ZigBee干扰引起的问题。提出了一种具有新的重发机会的故障设备的改进超帧结构,以减少冲突和重发延迟,具有很高的可靠性。我们的方案的性能评估和验证表明,可以显着改善节点的数据包丢失率,吞吐量,可靠性,能耗和平均延迟。

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