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Evaluation and optimal scaling of distributed generation systems in a smart city

机译:智慧城市中分布式发电系统的评估和最佳扩展

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Distributed generation (DG) represents an important resource to address relevant energy issues, such as reliability and sustainability, in the current and future smart cities. It is expected that distributed generation will gain considerable presence in the following years; however, the selection and sizing of the generation and storage systems is commonly done without an adequate level of detail. This simplified or approximated approach usually results in a suboptimal technology mix with an inadequate type of system and/or scale, which could compromise the economic feasibility of the DG project. To tackle this problem, stakeholders should consider many factors, including geographical characteristics (sun, wind ...), energy costs, local regulation, and energetic demand patterns, apart from analysing different technologies. Considering as an example location the city of Madrid, Spain, this paper proposes a linear programming model to evaluate the most common distributed generation technologies, with and without storage systems and under different electricity pricing scenarios. As a result, not only the optimal sizing, but also the optimal operation scheduling of the aforementioned systems are found. Then, an economic feasibility analysis is developed, comparing the different technologies and defining the best option for a given scenario. Furthermore, this study helps to find important milestones, such as battery prices, that could make distributed generation more attractive.
机译:分布式发电(DG)代表着解决当前和未来智慧城市中相关能源问题(如可靠性和可持续性)的重要资源。预计在接下来的几年中,分布式发电将获得可观的发展。但是,生成和存储系统的选择和大小确定通常没有足够的详细程度。这种简化或近似的方法通常会导致技术组合不够理想,系统类型和/或规模不足,这可能会损害DG项目的经济可行性。为了解决这个问题,除了分析不同的技术外,利益相关者还应考虑许多因素,包括地理特征(太阳,风...),能源成本,当地法规和充满活力的需求模式。以西班牙马德里市为例,本文提出了一种线性规划模型,用于评估最常见的分布式发电技术,无论有无存储系统,以及在不同的电价情况下。结果,不仅找到上述系统的最佳尺寸,而且找到最佳的操作调度。然后,进行经济可行性分析,比较不同的技术并为给定场景定义最佳选择。此外,这项研究有助于找到重要的里程碑,例如电池价格,这可以使分布式发电更具吸引力。

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