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>Minimum cost deployment in earthquake early warning system for high-speed railways
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Minimum cost deployment in earthquake early warning system for high-speed railways
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机译:高速铁路地震预警系统中的最低成本部署
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摘要
High-speed trains, carrying high social and commercial value, travel at a speed over 250km/h, thus any damage to tracks would cause severe loss. Detecting events which can cause track faults is important to the safety of high-speed railway systems. Railways, crossing the vast area of plains and mountains, are vulnerable to earthquakes which can damage tracks with destructive forces. In recent years, earthquake early warning systems (EEW) attract great attention from public because losses of lives and properties can be greatly reduced with earthquake alarm it offers. However, conventional EEW system cannot offer satisfactory alarms for high-speed railway systems. Therefore, it is necessary to develop an EEW for high-speed railways (HR-EEW). One of the key issues in designing an HR-EEW system is how to offer timely alarms to trains under certain constrains, such as budget limitation and geological restriction. We propose HR-EEW systems based on wireless sensor networks (WSNs). In this paper, we take a close look at deploying wireless sensor nodes in HR-EEW systems. We target at solving the minimum cost deployment problem while guaranteeing that any earthquake in a seismic district can be timely reported by k sensors.We carefully investigate this problem and derive a critical condition for a deployment to satisfy a predefined performance requirement. Then, we present novel algorithms to solve the problem. Finally, we evaluate our methodology under real data and synthetic data.
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机译:具有很高的社会和商业价值的高速火车以超过250 km / h的速度行驶,因此对轨道的任何损坏都将导致严重的损失。检测可能导致轨道故障的事件对于高速铁路系统的安全至关重要。穿越平原和山脉广大地区的铁路容易受到地震的破坏,地震可能会以破坏力破坏轨道。近年来,地震预警系统(EEW)受到公众的广泛关注,因为它提供的地震警报可以大大减少生命和财产损失。但是,传统的EEW系统无法为高速铁路系统提供令人满意的警报。因此,有必要开发用于高速铁路的EEW(HR-EEW)。设计HR-EEW系统的关键问题之一是如何在某些限制(例如预算限制和地质限制)下及时向列车发出警报。我们提出基于无线传感器网络(WSN)的HR-EEW系统。在本文中,我们仔细研究了在HR-EEW系统中部署无线传感器节点。我们的目标是解决最小成本部署问题,同时确保k个传感器可以及时报告地震地区的任何地震,我们将认真研究此问题并得出满足预定性能要求的部署关键条件。然后,我们提出了新颖的算法来解决这个问题。最后,我们在真实数据和综合数据下评估我们的方法。
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