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Reactive modelling of on-site energy system components for real-time application

机译:用于实时应用的现场能源系统组件的反应性建模

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The principle objective of this paper is to develop comprehensive models of on-site energy system components. This should facilitate reliable and optimal operation management of these systems in real-time. In practice management of these systems is mainly dependent on fixed operation planning of the integrated components. However the presence of multiple components, dynamic constraints and intermittent resources pose a dynamic and complex problem where the existing management schemes cannot lead to optimal practices at the utilisation stage. Consequently the value of a real-time management scheme that can guarantee system reliability, unit commitment, and optimal operational objectives is identified. However there is a lack of research on relevant modelling approaches of on-site energy system components to address real-time application requirements. To fulfill these gaps, we have proposed a reactive state-based modelling of potential components and associated model development methodology. This should enable models to encompass operational behavior of individual components and their aggregation as a system in a more reliable and applicable manner. Finally, reactive models of an existing manufacturing plant's energy system components are developed and validated as a case study. The results illustrate potential of proposed modelling approach in comparison with existing ones to be applied in real-time.
机译:本文的主要目标是开发现场能源系统组件的综合模型。这将有助于实时,可靠和最佳地管理这些系统。实际上,这些系统的管理主要取决于集成组件的固定操作计划。但是,多个组件,动态约束和间歇性资源的存在带来了一个动态而复杂的问题,即现有的管理方案无法在利用率阶段带来最佳实践。因此,确定了可以保证系统可靠性,单元承诺和最佳操作目标的实时管理方案的价值。然而,缺乏对现场能源系统组件的相关建模方法以解决实时应用需求的研究。为了弥补这些差距,我们提出了一种基于状态的反应性潜在组件建模方法以及相关的模型开发方法。这应该使模型能够以更可靠和适用的方式包含各个组件的操作行为及其作为系统的集合。最后,开发并验证了现有制造工厂能源系统组件的反应模型。结果表明,与现有的实时建模方法相比,该建模方法具有很大的潜力。

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