Modeling the carrier dependencies on demand-side in a smart multi-energy local network

N. Neyestani, M. Yazdani Damavandi, M. Shafie‐khah, J. Catalão, G. Chicco
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引用次数: 1

Abstract

Smart local energy networks represent a key option for more penetration of sustainably developed facilities. These facilities can cause an extended dependency in both time and carrier domains which should be considered through a comprehensive model. This paper introduces a new concept of internal and external dependencies. The concept is related to penetration of energy converters on demand side and the effects they bring to the system. Being achieved by implementation of smart grid, dependencies release operational flexibility and subsequently enhance the system efficiency. The model contains, carrier based demand response which preserves consumers satisfaction by utilizing the flexibility in exchanging the input energy carrier instead of changing end-usage pattern. The paper develops the coupling matrix model for smart multi-energy systems considering the external dependency as an added module to the overall model.
基于需求侧的智能多能量局域网络载波依赖建模
智能本地能源网络是可持续发展设施进一步渗透的关键选择。这些设施可能会导致时间和载波域的扩展依赖,这应该通过一个全面的模型来考虑。本文引入了内部和外部依赖关系的新概念。这个概念与能源转换器在需求侧的渗透以及它们给系统带来的影响有关。通过智能电网的实施,依赖性释放了运行灵活性,从而提高了系统效率。该模型包含基于载体的需求响应,通过利用交换输入能源载体的灵活性而不是改变最终使用模式来保持消费者满意度。将外部依赖作为整体模型的附加模块,建立了智能多能系统的耦合矩阵模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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