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Optimal Planning Method for a Multi-Energy Complementary System with New Energies Considering Energy Supply Reliability

机译:考虑能源供应可靠性的具有新能源的多能源互补系统的最优规划方法

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As the gathering place of urban energy consumptions, a city park has the characteristics of large energy demand, centralized energy consumption, and collection of cold, heat, power demands. The traditional independent energy supply mode leads to many problems, such as large energy loss in long-distance transmission, low comprehensive energy utilization efficiency and difficulty in clean energy consumption. This paper proposed a novel planning method, which can provide users with reliable cold, heat, power supply services through the combination of natural gas combined cold, heat and power units with new energy generations. The high reliability planning of integrated energy distribution system is realized using the proposed method, which makes full use of the multi-energy correlation coupling characteristics and users’ interactions. The correctness of the proposed method is verified via a typical integrated energy system in MATLAB. The proposed method improves the efficiency of local new energy utilization, and improve the reliability of users’ cold, heat and power supply in the city park.
机译:作为城市能源消费的聚集地,城市公园具有能源需求大,能源集中化,集冷,热,电需求为一体的特点。传统的独立能源供应方式存在很多问题,如长距离传输中的能量损失大,综合能源利用效率低,清洁能源消耗困难等。本文提出了一种新颖的规划方法,该方法可以通过将天然气组合的冷,热和动力装置与新能源发电相结合,为用户提供可靠的冷,热,电力供应服务。提出的方法实现了综合能源分配系统的高可靠性规划,充分利用了多能源关联耦合特性和用户交互作用。通过MATLAB中的典型集成能源系统验证了所提出方法的正确性。该方法提高了当地新能源的利用效率,并提高了城市公园用户冷,热和电源的可靠性。

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