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A Gradient-Based Coverage Optimization Strategy for Mobile Sensor Networks

机译:基于梯度的移动传感器网络覆盖优化策略

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摘要

A Voronoi-based strategy is proposed to maximize the sensing coverage in a mobile sensor network. Each sensor is moved to a point inside its Voronoi cell using a coverage improvement scheme. To this end, a gradient-based nonlinear optimization approach is utilized to find a target point for each sensor such that the local coverage increases as much as possible, if the sensor moves to this point. The algorithm is implemented in a distributed fashion using local information exchange among sensors. Analytical results are first developed for the single sensor case, and are subsequently extended to a network of mobile sensors, where it is desirable to maximize network-wide coverage with fast convergence. It is shown that under some mild conditions, the positions of the sensors converge to a stationary point of the objective function, which is the overall weighted coverage of the sensors. Simulations demonstrate the effectiveness of the proposed strategy.
机译:提出了基于Voronoi的策略,以最大程度地提高移动传感器网络中的感应覆盖范围。使用覆盖率改善方案将每个传感器移动到其Voronoi单元内部的某个点。为此,基于梯度的非线性优化方法被用于为每个传感器找到目标点,从而如果传感器移动到该点,则局部覆盖范围将尽可能增加。该算法使用传感器之间的本地信息交换以分布式方式实现。首先针对单传感器情况开发分析结果,然后将分析结果扩展到移动传感器网络,在此需要通过快速收敛来最大化整个网络的覆盖范围。结果表明,在某些温和条件下,传感器的位置会收敛到目标函数的固定点,该目标点是传感器的总加权覆盖范围。仿真证明了所提出策略的有效性。

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