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Placement of multiple mobile data collectors in underwater acoustic sensor networks

机译:在水下声传感器网络中放置多个移动数据收集器

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We propose two schemes for routing and placement of mobile data collectors in underwater acoustic sensor networks (UASNs): the delay tolerant placement and routing (DTPR) and the delay constrained placement and routing (DCPR). As their names reveal, while the DTPR maximizes the lifetime of the network without any delay considerations, the DCPR maximizes the lifetime of the network with an upper bound on the maximum delay. Both schemes are based on a 3D architecture, in which on-the-surface data collectors gather data from underwater sensors and relay them to an on-shore sink. We divide the lifetime of the network into fixed length rounds and move the data collectors to new locations at the beginning of each round. These problems are formulated as integer linear programs (ILPs), and we use an ILP solver to find the optimal placement of data collectors together with the multi-hop routing paths to deliver data from underwater sensors to data collectors. Our work is a pioneering effort in the placement of mobile data collectors in three-dimensional UASNs. Comprehensive experiments show that our schemes prolong the lifetime of the network significantly as compared to other data collector placement schemes.
机译:我们为水下声传感器网络(UASN)中的移动数据收集器的路由和放置提出了两种方案:延迟容忍的放置和路由(DTPR)和延迟约束的放置和路由(DCPR)。顾名思义,虽然DTPR可以在不考虑任何延迟的情况下最大程度地延长网络的使用寿命,但是DCPR可以在最大延迟上限的情况下最大程度地延长网络的使用寿命。两种方案均基于3D架构,在该架构中,地表数据收集器从水下传感器收集数据并将其中继到岸上水槽。我们将网络的生存期分为固定长度的轮次,并在每个轮次开始时将数据收集器移至新位置。这些问题被表述为整数线性程序(ILP),并且我们使用ILP求解器来查找数据收集器的最佳位置以及多跳路由路径,以将数据从水下传感器传递到数据收集器。我们的工作是将移动数据收集器放置在三维UASN中的开拓性工作。全面的实验表明,与其他数据收集器放置方案相比,我们的方案显着延长了网络的寿命。

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