| JOURNAL OF CLEANER PRODUCTION | 卷:241 |
| Two-stage optimal scheduling of air conditioning resources with high photovoltaic penetrations | |
| Article | |
| Wang, Dongxiao1  Wu, Runji1  Li, Xuecong1  Lai, Chun Sing1,2  Wu, Xueqing3  Wei, Jinxiao3  Xu, Yi3  Wu, Wanli1  Lai, Loi Lei1  | |
| [1] Guangdong Univ Technol, Sch Automat, Dept Elect Engn, Guangzhou 510006, Guangdong, Peoples R China | |
| [2] Univ Leeds, Sch Civil Engn, Fac Engn, Leeds LS2 9JT, W Yorkshire, England | |
| [3] Guangdong Foshan Power Construct Corp Grp Co Ltd, Foshan, Peoples R China | |
| 关键词: Air conditioning resources; Mixed integer linear programming; Rolling horizon optimization; Two-stage optimal scheduling; | |
| DOI : 10.1016/j.jclepro.2019.118407 | |
| 来源: Elsevier | |
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【 摘 要 】
Large-scale of controllable air conditioning loads have the potential to participate in distribution network operation via demand side control scheme. At the same time, distributed renewable energy resources are being deployed in distribution networks with increasing penetration rate. In this paper, a two-stage optimal scheduling method is proposed for distribution system with high photovoltaic penetration. The proposed scheduling method is decomposed into two stages to alleviate intra-day random variations of PV generation, electricity prices, and end-user load. In the day-ahead stage, this paper employs a mixed integer linear programming (MILP) method to achieve coordinated control of air conditioning loads, solar photovoltaic (PV) resources and battery energy storage systems (BESSs) under the target of minimizing system overall operation costs. A novel two-parameter lumped thermal model is introduced to more accurately describe the thermal dynamic process of the buildings, which is critical to meet the end users' thermal comfort in control process. In the real-time stage, a rolling horizon optimization approach is applied for minimization of imbalance costs between the day-ahead energy market and real-time energy market. Simulations are conducted on a radial distribution network, whose results verify that the proposed method can effectively reduce operation cost, lower peak demand and improve the PV penetration level in the distribution network. (C) 2019 Elsevier Ltd. All rights reserved.
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| Files | Size | Format | View |
|---|---|---|---|
| 10_1016_j_jclepro_2019_118407.pdf | 2824KB |
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