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Stentorian MAC: Enhance concurrency in Underwater Acoustic Sensor Networks

机译:Stentorian MAC:增强水下声传感器网络的并发性

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The long propagation delay and low data rate of acoustic communication make the exchange of control messages time-consuming. Therefore, traditional handshaking-based Medium Access Control (MAC) protocols do not perform well in Underwater Acoustic Sensor Networks (UASN). In this paper, we propose Stentorian MAC for delay-tolerant UASN with heavy data load. Instead of handshaking, Stentorian MAC uses one-way declaration of transmission plans which can reach all contention peers of the sender. With slotted timing and separation between channel contention and data transmission, it employs a distributed and asynchronous planning strategy, which not only eliminates data collision, but also arranges as many concurrent transmissions as possible, in order to achieve high throughput. We evaluated the concurrency, throughput and packet delay of Stentorian MAC through simulation of random transmission and data aggregation, and confirmed that it has met our design goal.
机译:声通信的长传播延迟和低数据速率使控制消息的交换非常耗时。因此,传统的基于握手的媒体访问控制(MAC)协议在水下声传感器网络(UASN)中不能很好地执行。在本文中,我们提出了Stentorian MAC用于具有高数据负载的时延容忍的UASN。 Stentorian MAC无需握手,而是使用单向的传输计划声明,该声明可以到达发送方的所有竞争对等方。由于采用了时隙定时和信道争用与数据传输之间的分隔,它采用了分布式异步计划策略,该策略不仅消除了数据冲突,而且还安排了尽可能多的并发传输,以实现高吞吐量。我们通过模拟随机传输和数据聚合来评估Stentorian MAC的并发性,吞吐量和数据包延迟,并确认它已达到我们的设计目标。

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