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An Automated Decision-Making Framework for Precipitation-Related Workflows

机译:用于降水相关工作流的自动决策框架

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Due to weather’s chaotic nature, static workflow managers are ineffective in integrating multiple Numerical Weather Models (NWMs) with cascading relationships. Unexpected events like flash floods and breakdown in canal water control systems or reservoirs make decision-making in workflow management further complicated. To enable dynamic decision-making, we need to update part or entire workflow, terminate unfitting NWM executions, and trigger parallel NWM workflows based on recent results from NWMs and observed conditions. Most of the existing weather-related decision support systems cannot trigger or create workflows dynamically. They are also designed for specific geography or functionality, making it challenging to customize for regions with different weather patterns. In this paper, we present an automated decision-making framework for precipitation-related workflows. The proposed framework can manage complex weather-related workflows dynamically in response to varying weather conditions, automatically control and monitor those workflows, and update workflow paths in response to unexpected weather events. Using significant flood-related datasets from the Colombo catchment area, we demonstrate that the proposed framework can achieve 100% accuracy in dynamic workflow generation and path updates compared to manual workflow controlling. Also, we demonstrate that unexpected event identification and pumping station controlling workflow triggers could be improved with advance rule sets.
机译:由于天气的混乱性质,静态工作流管理器在将多个数字天气模型(NWMS)与级联关系集成到级联关系中是无效的。闪光洪水和运河水控制系统或水库故障等意外事件使工作流管理的决策进一步复杂化。为了实现动态决策,我们需要更新部分或整个工作流,终止不合适的NWM执行,并根据NWMS和观察条件的最新结果触发并行NWM工作流程。大多数现有的天气相关的决策支持系统无法动态触发或创建工作流程。它们也专为特定地理或功能而设计,使其具有挑战性地为不同天气模式的地区定制。在本文中,我们提出了一种用于与降水相关的工作流程的自动决策框架。建议的框架可以在响应变化的天气条件下动态管理复杂的天气相关的工作流程,自动控制和监控这些工作流程,并更新工作流程路径以响应意外的天气事件。使用来自科伦坡集水区的大量与洪水相关的数据集,我们证明,与手动工作流控制相比,所提出的框架可以在动态工作流生成和路径更新中实现100%的精度。此外,我们证明,可以通过先进的规则集来改进意外的事件识别和控制工作流程触发器的泵送站。

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