Phase optimization for control/fusion applications in dynamically composed sensor networks

S. Zug, André Dietrich, Christoph Steup, Tino Brade, Thomas Petig
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引用次数: 3

Abstract

The variable acquisition of distributed sensor perception promises an effective utilization of these data across different applications. Multiple observations enable an increase in the quality of the system output. However, the dynamic composition disables all off-line optimization approaches, especially for sensor-application-scheduling. This paper addresses the need for an online adjustment of periodically working sensors and fusion/control applications. Based on a number of common goals - e.g., minimization of the variance of sensor data or the age of data sets - we deduce different metrics. For one aspect, the number of input counts, we propose a mathematical description and apply related optimizations. We use an an example analysis to illustrate further research goals.
动态组成传感器网络中控制/融合应用的相位优化
分布式传感器感知的可变获取保证了这些数据在不同应用中的有效利用。多次观测可以提高系统输出的质量。然而,动态组合禁用了所有离线优化方法,特别是对于传感器应用程序调度。本文解决了周期性工作传感器和融合/控制应用的在线调整需求。基于一些共同的目标——例如,最小化传感器数据的方差或数据集的年龄——我们推断出不同的指标。对于一个方面,输入计数的数量,我们提出了一个数学描述并应用相关的优化。我们用一个实例分析来说明进一步的研究目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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