传感器节点搬迁一次性跳跃机构的设计优化

Gabseong Lee, Geunho Lee, Y. Nishimura, N. Chong, Donghoon Choi
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引用次数: 0

摘要

提出了一种优化一次性跳跃机构的设计自动化方法,用于能量受限传感器节点的重新定位。跳跃机制有望增强最初随机部署的传感器网络的覆盖范围和连通性,同时消耗最小的能量。特别感兴趣的是在不确定环境条件下孤立节点的适当重新定位。具体来说,我们考虑了如何通过优化弹跳机构的发射角度使气动干扰最小化。为了构建自动化仿真与设计环境,采用了过程集成与设计优化方法。我们不仅得到了满足所有要求的最优解,而且展示了控制节点移动的自动化设计过程。
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Design optimization of one-time-use leaping mechanism for sensor node relocation
This paper proposes a design automation method to optimize one-time-use leaping mechanism for relocating energy-constrained sensor nodes. The leaping mechanism is expected to enhance coverage and connectivity of sensor networks initially randomly deployed with minimum energy consumed. Of particular interest is proper relocation of isolated nodes under uncertain environment conditions. Specifically, we consider how the aerodynamic disturbance can be minimized with an optimized launch angle of the leaping mechanism. To construct an automated simulation and design environment, the process integration and design optimization (PIDO) approach is employed. We not only obtain an optimum solution satisfying all imposed requirements, but also demonstrate an automated design process for controlled node mobility.
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