The simulation and emulation platforms of underwater acoustic sensor networks

Hongyu Cui, Youwen Zhang, Xin Liu, Dajun Sun
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引用次数: 5

Abstract

Underwater acoustic sensor networks (UASN) are a promising research area, due to the wide range of aquatic applications, such as pollution monitoring and submarine detection. The realistic evaluation of the novel UASN protocols and algorithms in the field trials is too expensive and time-consuming. Therefore, standard simulation and emulation platforms of UASN are quite required, and can efficiently reduce the development cycle of novel methods. In this paper, we introduce the platforms developed by our laboratory, which are based on the well-known ns2 and ns-miracle simulators, with the layered structure supporting the cross-layer signaling. The simulation platform works on the personal computer equipped with linux operating system. The architecture of the platform is divided into four layers: application layer, routing layer, medium access layer, and physical layer. The emulation platform works on the embedded devices in the sea trial, such as the OMAPL138 DSP+ARM dual-processor of Texas Instrument company. To guarantee the consistency, the programming codes of networking protocols in the emulation platform can be adopted directly from those in the simulation platform. Finally, in this paper, we present the simulation and emulation results to verify the accuracy and efficiency of the platforms.
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水声传感器网络仿真与仿真平台
水声传感器网络(UASN)是一个很有前途的研究领域,因为它在水中有着广泛的应用,如污染监测和潜艇探测。在现场试验中对新的usasn协议和算法进行实际评估过于昂贵和耗时。因此,需要标准的usasn仿真和仿真平台,并且可以有效地缩短新方法的开发周期。本文介绍了本实验室基于著名的ns2和nsmiracle模拟器开发的平台,采用分层结构支持跨层信令。仿真平台工作在安装了linux操作系统的个人计算机上。平台的体系结构分为应用层、路由层、介质访问层和物理层。该仿真平台适用于海试中的嵌入式设备,如德州仪器公司的OMAPL138 DSP+ARM双处理器。为了保证一致性,仿真平台中的网络协议编程代码可以直接采用仿真平台中的网络协议编程代码。最后,本文给出了仿真和仿真结果,验证了平台的准确性和效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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