Consumption Optimization in an Office Building Considering Flexible Loads and User Comfort

被引:7
作者
Khorram, Mahsa [1 ,2 ]
Faria, Pedro [1 ,2 ]
Abrishambaf, Omid [1 ,2 ]
Vale, Zita [2 ]
机构
[1] GECAD Res Grp Intelligent Engn & Comp Adv Innovat, Rua DR Antonio Bernardino Almeida 431, P-4200072 Porto, Portugal
[2] Polytech Porto, Rua DR Antonio Bernardino Almeida 431, P-4200072 Porto, Portugal
关键词
building energy management; demand response; load shifting; SCADA; user comfort; COMMERCIAL BUILDINGS; DEMAND RESPONSE;
D O I
10.3390/s20030593
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This paper presents a multiperiod optimization algorithm that is implemented in a Supervisory Control and Data Acquisition system. The algorithm controls lights and air conditioners as flexible loads to reduce the consumption and controls a dishwasher as a deferrable load to implement the load shifting. Several parameters are considered to implement the algorithm for several successive periods in a real building operation. In the proposed methodology, optimization is done regarding user comfort, which is modeled in the objective function related to the indoor temperature in each room, and in the constraints in order to prevent excessive power reduction, according to users' preferences. Additionally, the operation cycle of a dishwasher is included, and the algorithm selects the best starting point based on the appliance weights and power availability in each period. With the proposed methodology, the building energy manager can specify the moments when the optimization is run with consideration of the operational constraints. Accordingly, the main contribution of the paper is to provide and integrate a methodology to minimize the difference between the actual and the desired temperature in each room, as a measure of comfort, respecting constraints that can be easily bounded by building users and manager. The case study considers the real consumption data of an office building which contains 20 lights, 10 ACs, and one dishwasher. Three scenarios have been designed to focus on different functionalities. The outcomes of the paper include proof of the performance of the optimization algorithm and how such a system can effectively minimize electricity consumption by implementing demand response programs and using them in smart grid contexts.
引用
收藏
页数:20
相关论文
共 25 条
[1]   Towards transactive energy systems: An analysis on current trends [J].
Abrishambaf, Omid ;
Lezama, Fernando ;
Faria, Pedro ;
Vale, Zita .
ENERGY STRATEGY REVIEWS, 2019, 26
[2]   Automated Demand Response From Home Energy Management System Under Dynamic Pricing and Power and Comfort Constraints [J].
Althaher, Sereen ;
Mancarella, Pierluigi ;
Mutale, Joseph .
IEEE TRANSACTIONS ON SMART GRID, 2015, 6 (04) :1874-1883
[3]  
[Anonymous], 2008, Assessment of demand response and advanced metering
[4]  
[Anonymous], 2019, P INT S DISTR COMP A
[5]  
[Anonymous], 2012, IEEE POWER ENERGY SO
[6]   Model predictive control of commercial buildings in demand response programs in the presence of thermal storage [J].
Cao, Yan ;
Du, Jiang ;
Soleymanzadeh, Ehsan .
JOURNAL OF CLEANER PRODUCTION, 2019, 218 :315-327
[7]   Multiobjective Optimal Scheduling Framework for HVAC Devices in Energy-Efficient Buildings [J].
Chakraborty, Nilotpal ;
Mondal, Arijit ;
Mondal, Samrat .
IEEE SYSTEMS JOURNAL, 2019, 13 (04) :4398-4409
[8]   Quantification of electricity flexibility in demand response: Office building case study [J].
Chen, Yongbao ;
Chen, Zhe ;
Xu, Peng ;
Li, Weilin ;
Sha, Huajing ;
Yang, Zhiwei ;
Li, Guowen ;
Hu, Chonghe .
ENERGY, 2019, 188
[9]   Measures to improve energy demand flexibility in buildings for demand response (DR): A review [J].
Chen, Yongbao ;
Xu, Peng ;
Gu, Jiefan ;
Schmidt, Ferdinand ;
Li, Weilin .
ENERGY AND BUILDINGS, 2018, 177 :125-139
[10]   Application of HVAC Systems with Control Based on PMV Index in University Buildings with Complex Topology [J].
Conceicao, Eusebio Z. E. ;
Gomes, Joao M. M. ;
Ruano, Antonio E. .
IFAC PAPERSONLINE, 2018, 51 (10) :20-25