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Real-Time Communication Support for Underwater Acoustic Sensor Networks

机译:水下声传感器网络的实时通信支持

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摘要

Underwater sensor networks represent an important and promising field of research due to the large diversity of underwater ubiquitous applications that can be supported by these networks, e.g., systems that deliver tsunami and oil spill warnings, or monitor submarine ecosystems. Most of these monitoring and warning systems require real-time communication in wide area networks that have a low density of nodes. The underwater communication medium involved in these networks is very harsh and imposes strong restrictions to the communication process. In this scenario, the real-time transmission of information is done mainly using acoustic signals, since the network nodes are not physically close. The features of the communication scenario and the requirements of the communication process represent major challenges for designers of both, communication protocols and monitoring and warning systems. The lack of models to represent these networks is the main stumbling block for the proliferation of underwater ubiquitous systems. This paper presents a real-time communication model for underwater acoustic sensor networks (UW-ASN) that are designed to cover wide areas with a low density of nodes, using any-to-any communication. This model is analytic, considers two solution approaches for scheduling the real-time messages, and provides a time-constraint analysis for the network performance. Using this model, the designers of protocols and underwater ubiquitous systems can quickly prototype and evaluate their solutions in an evolving way, in order to determine the best solution to the problem being addressed. The suitability of the proposal is illustrated with a case study that shows the performance of a UW-ASN under several initial conditions. This is the first analytic model for representing real-time communication in this type of network, and therefore, it opens the door for the development of underwater ubiquitous systems for several application scenarios.
机译:水下传感器网络代表着重要而有前途的研究领域,因为这些网络可以支持水下无处不在的应用程序的多样性,例如这些网络可以发出海啸和漏油警报或监视海底生态系统。这些监视和警告系统大多数都需要在节点密度低的广域网中进行实时通信。这些网络中涉及的水下通信介质非常苛刻,并且对通信过程施加了严格的限制。在这种情况下,由于网络节点在物理上不紧密,因此主要使用声音信号进行信息的实时传输。通信方案的特征和通信过程的要求对通信协议以及监视和警告系统的设计人员构成了重大挑战。缺乏代表这些网络的模型是水下无处不在系统扩散的主要绊脚石。本文提出了一种水下声传感器网络(UW-ASN)的实时通信模型,该模型被设计为使用任意对任意通信来覆盖节点密度低的广阔区域。该模型是解析模型,考虑了用于调度实时消息的两种解决方案,并提供了网络性能的时间约束分析。使用此模型,协议和水下无处不在系统的设计人员可以快速发展原型并评估其解决方案,从而确定解决问题的最佳解决方案。案例研究说明了该提案的适用性,该案例显示了在几种初始条件下UW-ASN的性能。这是在这种类型的网络中表示实时通信的第一个分析模型,因此,它为多种应用场景的水下无处不在系统的开发打开了大门。

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