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Hierarchical underwater acoustic sensor networks with (virtual) transmit/receive arrays

机译:具有(虚拟)的分层水下声学传感器网络(虚拟)发送/接收阵列

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We consider a hierarchical underwater acoustic sensor network architecture in which the sensors and the collector stations operate in distinct layers. The hierarchical architecture is motivated by the property of the acoustic underwater transmission medium that for each transmission distance there exists an operating frequency for which the narrow-band signal-to-noise ratio is maximized. The sensors and collector stations are consequently allocated different operating frequencies. We assume a uniform distribution of both sensors and collector stations over the finite area of the sensing field. The sensors are organized into clusters forming virtual transmit/receive arrays. The collector stations on the other hand are equipped with co-located transmit/receive arrays. We adopt a communication theoretic approach and study the interdependence of the sustainable number of hops through the network, end-to-end frame error probability, power and bandwidth allocation. The analysis is performed under the assumption of Ricean fading and interference from other nodes within the same layer of the hierarchy. We present numerical examples that illustrate the network performance and demonstrate that there are preferred operating frequencies which ensure network operation without any cross-interference between the collector network and the sensor network.
机译:我们考虑一个分层水下声学传感器网络架构,其中传感器和集电极站在不同的层中运行。分层架构由声水下传输介质的特性激励,用于每个传输距离存在窄带信噪比最大化的工作频率。因此,传感器和集电极站被分配不同的操作频率。我们假设传感器和集电极站的均匀分布在感测场的有限区域上。传感器被组织成形成虚拟发送/接收阵列的集群。另一方面的收集器站配备有共同定位的发射/接收阵列。我们采用通信理论方法,研究通过网络,端到端帧误差概率,电力和带宽分配来研究可持续数量的跳跃的相互依存。该分析是在ricean衰落和来自层次结构层内的其他节点的干扰的假设下进行的。我们呈现了说明网络性能的数值示例,并证明存在优选的操作频率,其确保没有收集器网络与传感器网络之间的任何交叉干扰的网络操作。

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