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An Outer-Approximation based algorithm for solving integer non-linear programming problems for Optimal Sensor Placement

机译:基于外逼近的算法,用于求解整数非线性规划问题,以优化传感器放置

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There is a growing need across GE businesses to push system operation performance closer to design entitlement through application of advanced controls and optimization. The performance requirements coupled with stringent operability boundaries necessitate systematic design of sensing networks for condition monitoring across applications such as power plants, aviation, etc. This paper addresses the important system level question of an optimal sensor network design through model-based estimation and optimization. The main contribution of this work is the development of an outer approximation based algorithm for solving a pure integer non-linear programming problem that arises when designing an optimal sensor network for on line condition monitoring of systems like a gasifier in an Integrated Gasification Combined Cycle (IGCC) plant. The effectiveness of the proposed methodology has been demonstrated in designing a robust and cost-effective sensor network using a simplified gasifier model for an IGCC plant.
机译:GE业务部门越来越需要通过应用高级控件和优化来使系统操作性能更接近设计权利。性能要求与严格的可操作性边界相结合,需要对发电厂,航空等应用进行状态监控的传感网络进行系统设计。本文通过基于模型的估计和优化解决了最优传感器网络设计的重要系统级问题。这项工作的主要贡献是开发了一种基于外部近似的算法,用于解决纯整数非线性编程问题,该问题是在设计最佳传感器网络以对系统(如集成气化联合循环中的气化炉)进行在线状态监测时出现的( IGCC)工厂。在为IGCC工厂使用简化的气化器模型设计鲁棒且具有成本效益的传感器网络中,已证明了所提出方法的有效性。

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