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A hierarchical scheduling method of active distribution network considering flexible loads in office buildings

机译:考虑办公楼中灵活负载的主动分配网络的分层调度方法

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摘要

Aiming to further achieve the flexible operation of the active distribution network by utilizing heating, ventilation and air-conditioning systems and electric vehicles of office buildings, a hierarchical scheduling method of active distribution network considering flexible loads in office buildings is proposed in this paper. In stage I, based on the heat storage property of office buildings and the behavioral property of office workers, an energy optimal scheduling model of the office building incorporating heating, ventilation and air-conditioning systems and electric vehicles is established. In stage II, an optimal scheduling method of the active distribution network considering on-load tap changer and flexible loads (i.e., heating, ventilation and air-conditioning systems and electric vehicles) in office buildings is developed by using the second-order conic relaxation and piecewise linearization. Finally, the scheduling results for the heating, ventilation and air-conditioning systems and electric vehicles in office buildings under different cases are compared in a winter scenario, and the security and economy of the active distribution network considering flexible loads in office buildings are further analyzed. Numerical studies demonstrate that the proposed method can contribute to the office building cost reduction and the load factor increment while guaranteeing the heating and the transportation demands of office workers. It can further improve the security and economic operation of the distribution network.
机译:旨在通过利用加热,通风和空调系统和办公室建筑物的电动车辆,在本文提出了考虑办公楼中的灵活负载,通过利用加热,通风和空调系统和电动车辆,通过采用加热,通风和空调系统和电动车辆进行柔性运行。在阶段,基于办公楼的蓄热特性和办公大工人员的行为财产,建立了采用加热,通风和空调系统和电动汽车的办公大楼的能量最优调度模型。在II阶段,通过使用二阶圆锥形放松开发了考虑负载分接开关和柔性负载和柔性负载(即,加热,通风和空调系统和电动车)的主动分配网络的最佳调度方法和分段线性化。最后,在不同情况下,在不同情况下的加热,通风和空调系统和电动车辆的调度结果在冬季场景中进行了比较,以及考虑办公楼中的灵活负载的主动配送网络的安全性和经济性得到了进一步分析。数值研究表明,该方法可以有助于办公楼成本降低和负载因子增量,同时保证办公室工作人员的加热和运输需求。它可以进一步提高分销网络的安全和经济运行。

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