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Maximization of the Supportable Number of Sensors in QoS-Aware Cluster-Based Underwater Acoustic Sensor Networks

机译:在基于QoS感知群集的水下声传感器网络中可支持的传感器数量最大化

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摘要

This paper proposes a practical low-complexity MAC (medium access control) scheme for quality of service (QoS)-aware and cluster-based underwater acoustic sensor networks (UASN), in which the provision of differentiated QoS is required. In such a network, underwater sensors (U-sensor) in a cluster are divided into several classes, each of which has a different QoS requirement. The major problem considered in this paper is the maximization of the number of nodes that a cluster can accommodate while still providing the required QoS for each class in terms of the PDR (packet delivery ratio). In order to address the problem, we first estimate the packet delivery probability (PDP) and use it to formulate an optimization problem to determine the optimal value of the maximum packet retransmissions for each QoS class. The custom greedy and interior-point algorithms are used to find the optimal solutions, which are verified by extensive simulations. The simulation results show that, by solving the proposed optimization problem, the supportable number of underwater sensor nodes can be maximized while satisfying the QoS requirements for each class.
机译:本文提出了一种实用的低复杂度MAC(中等访问控制)方案,用于感知服务质量(QoS)和基于集群的水下声传感器网络(UASN),其中需要提供区分的QoS。在这样的网络中,群集中的水下传感器(U传感器)被分为几类,每类都有不同的QoS要求。本文考虑的主要问题是最大化群集可容纳的节点数量,同时仍根据PDR(数据包交付率)为每个类别提供所需的QoS。为了解决该问题,我们首先估计数据包传递概率(PDP),然后使用它来制定优化问题,以确定每个QoS类的最大数据包重传的最优值。自定义的贪婪和内点算法用于找到最佳解决方案,该解决方案已通过大量仿真验证。仿真结果表明,通过解决所提出的优化问题,可以在满足每个类别的QoS要求的同时最大化水下传感器节点的可支持数量。

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