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深度中的战略部署:基于三维声学地图的水下传感器放置原则性优化

Strategic deployment in the deep: Principled underwater sensor placement optimization with three-dimensional acoustic map.

作者信息

Zhu Xiaohan, Wang Ye, Fang Zeyu, Cheng Lei, Li Jianlong

机构信息

College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou, 310027, China.

National Key Laboratory of Underwater Acoustic Technology, Harbin Engineering University, Harbin 150001, China.

出版信息

J Acoust Soc Am. 2024 Oct 1;156(4):2668-2685. doi: 10.1121/10.0032456.

Abstract

Underwater acoustic sensors are vital for monitoring marine environments and detecting targets, but their optimal placement presents challenges, particularly in deep-sea environments. This paper addresses the question of determining the optimal sensor placement in a specific ocean region through a principled optimization approach. While previous studies mainly utilized heuristic algorithms without exploiting problem-specific structures, this work explores leveraging the complex three-dimensional acoustic environment through principled modeling and tailored optimization. Specifically, intricate three-dimensional multi-directional acoustic maps are constructed for each sensor. Based on these maps, the sensor placement problem is then cast as an integer linear programming, allowing the study to leverage established theoretical results from operations research. Additionally, an alternative algorithm with its performance indicator is presented to find near-optimal solutions efficiently and can empirically reach over 99% coverage of the optimal solution. Experimental results using real-life data from the South China Sea demonstrate the effectiveness of the proposed approach in achieving much larger detection coverage compared to random and empirical strategies. Notably, the alternative fast algorithm approaches the optimal solution in significantly less time. Furthermore, experiments show that any further simplification of this approach leads to the performance degradation.

摘要

水下声学传感器对于监测海洋环境和探测目标至关重要,但它们的最佳布局存在挑战,尤其是在深海环境中。本文通过一种有原则的优化方法解决了在特定海洋区域确定最佳传感器布局的问题。虽然先前的研究主要使用启发式算法而未利用特定问题的结构,但这项工作探索了通过有原则的建模和量身定制的优化来利用复杂的三维声学环境。具体而言,为每个传感器构建了复杂的三维多向声学图。基于这些图,传感器布局问题随后被转化为整数线性规划,使该研究能够利用运筹学中已有的理论结果。此外,还提出了一种具有性能指标的替代算法,以有效地找到接近最优的解决方案,并且通过实验验证其能达到超过99%的最优解覆盖率。使用来自中国南海的实际数据进行的实验结果表明,与随机和经验策略相比,所提出的方法在实现更大的探测覆盖范围方面是有效的。值得注意的是,替代快速算法能在显著更短的时间内接近最优解。此外,实验表明,对该方法的任何进一步简化都会导致性能下降。

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