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Heterogeneous resource management in energy hubs with self-consumption: Contributions and application example

机译:具有自我消费的能源枢纽中的异构资源管理:贡献和应用示例

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摘要

The energy hub concept and modeling methodology are widely employed tools for solving resource conversion and storage scheduling problems. For instance, industrial clusters might benefit from determining the suitable time to operate their facilities and to sell electricity to the public power grid, according to legal, economic or environmental factors. In this paper, novel elements are introduced in order to more accurately represent real plants and to reduce the amount of decision variables. The major innovation is to consider devices consuming a resource which is not related to the quantity of output produced, by attaching binary decision variables to certain energy hub outputs. Secondly, a path vector is defined to take into account the flows of resources within the system instead of employing a variable for each branch between the components. The third innovation consists of an additional vector to express the amount of output resources sold from the energy hub, including constraints for those resources which are exported and imported through the same medium. An extended energy hub model is first proposed and then applied to a real plant example, including multiple and heterogeneous resources and performing a comparison between days with different demands, weather conditions and electricity prices. The results obtained in the selected scenarios demonstrate a logical operation scheduling, and therefore validate the proposed approach.
机译:能源枢纽概念和建模方法是解决资源转换和存储调度问题的广泛采用的工具。例如,根据法律,经济或环境因素,确定适当的时间来运营其设施并向公共电网出售电力,产业集群可能会受益。在本文中,引入了新颖的元素,以便更准确地表示真实植物并减少决策变量的数量。主要的创新是通过将二进制决策变量附加到某些能源枢纽输出,来考虑消耗与生产的输出量无关的资源的设备。其次,定义路径矢量以考虑系统内的资源流,而不是为组件之间的每个分支使用变量。第三种创新包括一个附加向量,用于表达从能源枢纽出售的产出资源的数量,包括对通过同一媒介进出口的资源的约束。首先提出一个扩展的能源枢纽模型,然后将其应用到一个实际的工厂示例中,该示例包括多个异构资源,并在具有不同需求,天气条件和电价的日子之间进行比较。在所选方案中获得的结果证明了逻辑操作调度,因此验证了所提出的方法。

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