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A study on the MAC protocol for dynamic underwater acoustic sensor networks

机译:动态水下声传感器网络的MAC协议研究

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The design of the media access control protocol (MAC) is one of the key challenges during the developing of underwater acoustic sensor networks (USN). In contention-based MAC protocols, packet collisions can be reduced by exchanging control packets. And if a packet is lost, the sender usually retransmit it. But all the above are much more difficult to be adopted in USN because the propagation delay and the transmission energy consumption are pretty large. The contention-free MAC protocols such as TDMA are usually used in USN to overcome the difficulties led by contention based protocols. However, the channel efficiency is still very low when the classical TDMA and its variants with fixed timeslots are applied directly in dynamic USN. Aiming at this problem, a new guard time setting method is presented in this paper. It uses some prior information, such as the maximum propagation delay of the networks and the maximum relative speed of the sensor nodes with respect to the center node and the mechanism of the packet transmission for the sensor nodes. Analysis and simulations show that the proposed method can reduce the time interval of the data packets received at the center node, which can improve the channel efficiency and the performance of the dynamic USN effectively.
机译:媒体访问控制协议(MAC)的设计是水下声传感器网络(USN)开发过程中的关键挑战之一。在基于竞争的MAC协议中,可以通过交换控制数据包来减少数据包冲突。而且,如果数据包丢失,则发送方通常会重新发送该数据包。但是,由于传播延迟和传输能量消耗非常大,因此上述所有内容在USN中都很难采用。 USN中通常使用无争用的MAC协议(如TDMA)来克服基于争用的协议所带来的困难。但是,当经典的TDMA及其固定时隙的变体直接应用于动态USN时,信道效率仍然非常低。针对这一问题,本文提出了一种新的保护时间设置方法。它使用一些先验信息,例如网络的最大传播延迟和传感器节点相对于中心节点的最大相对速度,以及传感器节点的数据包传输机制。分析和仿真表明,该方法可以减少中心节点接收到的数据包的时间间隔,从而可以有效地提高信道效率和动态USN的性能。

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