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Analysis of Throughput and Delay for an Underwater Multi-DATA Train Protocol with Multi-RTS Reception and Block ACK

机译:用多RTS接收和块ACK对水下多数据列车协议的吞吐量和延迟分析

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摘要

We propose an underwater multi-DATA train protocol with multi-RTS reception and block ACK (BACK) for underwater acoustic sensor networks. Due to long underwater acoustic propagation delay, some RTS frames may not overlap at a sink node, even if the RTS frames were sent to the sink node simultaneously by different sensor nodes. We consider that our underwater sink node can recover these nonoverlapping RTS frames. Since our RTS frame contains ID of the RTS sending node and a timestamp, the sink node calculates the propagation delay between the RTS sending node and the sink node, then broadcasts a CTS frame. Since our CTS frame contains when each RTS sending node can transmit a DATA frame to the sink node, multiple DATA frames transmitted by different sensor nodes can be formed as a train at the sink node. We also propose an underwater BACK protocol which is analogous to our proposed underwater multi-DATA train protocol. We analyze normalized throughput and mean access delay of our proposed protocols and the conventional protocols. The analytical and simulation results show that our analysis is accurate and our proposed protocols outperform the conventional protocols. Our proposed protocol can shorten the delay and increase the throughput via the multi-DATA train, multi-RTS reception, and BACK.
机译:我们提出了一种带有多RTS接收和块ACK(返回)的水下多数据列车协议,用于水下声学传感器网络。由于长水下声波传播延迟,即使RTS帧同时由不同的传感器节点发送到宿节点,某些RTS帧也可能在汇聚节点处不重叠。我们认为我们的水下散热节点可以恢复这些非抛光RTS帧。由于我们的RTS帧包含RTS发送节点的ID和时间戳,因此汇聚节点计算RTS发送节点和宿节点之间的传播延迟,然后广播CTS帧。由于我们的CTS帧包含当每个RTS发送节点可以将数据帧发送到宿节点时,所以由不同传感器节点发送的多个数据帧可以在汇聚节点处形成为列车。我们还提出了一种水下回复协议,这些协议类似于我们提出的水下多数据列车协议。我们分析了我们所提出的协议和常规协议的正常化吞吐量和平均访问延迟。分析和仿真结果表明,我们的分析是准确的,我们提出的协议优于传统方案。我们所提出的协议可以缩短延迟并通过多数据列车,多RTS接收和背部增加吞吐量。

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