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Moving horizon estimation for pipeline leak detection, localization, and constrained size estimation

机译:用于管道泄漏检测、定位和约束尺寸估计的移动水平估计

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摘要

Advanced pipeline leak detection and localization techniques are needed to reduce greenhouse gas emissions from hydrocarbon transportation pipelines. Developing effective leak detection and localization methods is challenging due to the spatiotemporal dynamics of process variables, the presence of process/measurement disturbances and constraints, and the limited measurement data. To address this issue, this manuscript proposes a novel moving horizon estimation design for pipeline leak detection, constrained estimation of leak size and location by using an infinite-dimensional pipeline hydraulic model. Based on the mass and momentum balance laws and the Cayley-Tustin time-discretization method, an infinite-dimensional discrete-time pipeline hydraulic model is proposed considering (unknown but bounded) disturbance and leak. By introducing a coordinate transformation, we decouple the leak size and location estimation problems. The implementable discrete-time moving horizon estimator and observer are designed for constrained leak size and location estimation. The effectiveness of the proposed designs is validated via simulation examples.
机译:需要先进的管道泄漏检测和定位技术来减少碳氢化合物运输管道的温室气体排放。由于过程变量的时空动态、过程/测量干扰和约束的存在以及有限的测量数据,开发有效的泄漏检测和定位方法具有挑战性。为了解决这个问题,本文提出了一种新颖的管道泄漏检测移动水平估计设计,通过使用无限维管道水力模型对泄漏大小和位置进行约束估计。基于质量和动量平衡定律和 Cayley-Tustin 时间离散化方法,提出了一种考虑(未知但有界的)扰动和泄漏的无限维离散时间管道水力模型。通过引入坐标变换,我们将泄漏大小和位置估计问题解耦。可实施的离散时间移动水平估计器和观察器专为约束泄漏大小和位置估计而设计。通过仿真示例验证了所提出设计的有效性。

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