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Acoustic Sensor Network Design for Position Estimation

机译:用于位置估计的声传感器网络设计

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In this article, we develop tractable mathematical models and approximate solution algorithmsrnfor a class of integer optimization problems with probabilistic and deterministic constraints, withrnapplications to the design of distributed sensor networks that have limited connectivity. For a given deployment region size, we calculate the Pareto frontier of the sensor network utility at the desired probabilities for d-connectivity and k-coverage. As a result of our analysis, we determine (1) the number of sensors of different types to deploy from a sensor pool, which offers a cost vs. performance trade-off for each type of sensor, (2) the minimum required radio transmission ranges of the sensors to ensure connectivity, and (3) the lifetime of the sensor network. For generality, we consider randomly deployed sensor networks and formulate constrained optimization technique to obtain the localization performance. The approach is guided and validated using an unattended acoustic sensor network design. Finally, approximations of the complete statistical characterization of the acoustic sensor networks are given, which enable average network performance predictions of any combination of acoustic sensors.
机译:在本文中,我们针对具有概率和确定性约束的一类整数优化问题,开发了易处理的数学模型和近似求解算法,并将其应用于连接性有限的分布式传感器网络的设计中。对于给定的部署区域大小,我们以d连通性和k覆盖率的所需概率计算传感器网络实用程序的Pareto边界。分析的结果是,我们确定(1)从传感器池中部署的不同类型的传感器的数量,这为每种类型的传感器提供了成本与性能的权衡,(2)所需的最小无线传输传感器范围以确保连通性;以及(3)传感器网络的寿命。一般而言,我们考虑随机部署的传感器网络,并制定约束优化技术以获得定位性能。该方法使用无人值守的声传感器网络设计进行指导和验证。最后,给出了声传感器网络的完整统计特征的近似值,这使声传感器的任何组合的平均网络性能预测成为可能。

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