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Synthesised constraint models for distributed energy management

机译:分布式能源管理的综合约束模型

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Resource allocation is a task frequently encountered in energy management systems such as the coordination of power generators in a virtual power plant (unit commitment). Standard solutions require fixed parametrised optimisation models that the participants have to stick to without leaving room for tailored behaviour or individual preferences. We present a modelling methodology that allows organisations to specify optimisation goals independently of concrete participants and participants to craft more detailed models and state individual preferences. While considerable efforts have been spent on devising efficient control algorithms and detailed physical models in power management systems, practical aspects of unifying several heterogeneous models for optimisation have been widely ignored - a gap we aim to close. As a by-product, we give a formulation of warm and cold start-up times for power plants that improves existing power plant models. The concepts are detailed with the load-distribution problem faced in virtual power plants and evaluated on several random instances where we observe that a significant number of soft constraints of individual actors can be satisfied if considered.
机译:资源分配是能源管理系统中经常遇到的任务,例如虚拟电厂中发电机的协调(单位承诺)。标准解决方案需要固定参数化的优化模型,参与者必须遵守这些模型,而没有为定制行为或个人偏好留出空间。我们提供了一种建模方法,该方法允许组织独立于具体参与者和参与者来指定优化目标,从而制定更详细的模型并陈述个人偏好。尽管已经在设计电源管理系统中的有效控制算法和详细的物理模型上花费了大量的精力,但是统一几个异构模型以进行优化的实际问题却被广泛忽略,这是我们要弥合的差距。作为副产品,我们为发电厂提供了暖启动时间和冷启动时间的公式,以改善现有的发电厂模型。详细介绍了虚拟电厂中面临的负荷分配问题,并在几个随机实例上对这些概念进行了评估,在这些实例中,我们观察到,如果考虑考虑,可以满足单个参与者的大量软约束。

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