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Improved normal-boundary intersection algorithm: A method for energy optimization strategy in smart buildings

delete2022-03-01
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OA
AI
J
Jia Cui *
J
Jiang Pan
S
Shunjiang Wang *
M
Martin Onyeka Okoye
J
Junyou Yang
李阳 封面图
李阳 (Yang Li) *
H
Hao Wang
DOI:10.1016/j.buildenv.2022.108846delete
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摘要

摘要

En 中文
With the widespread use of distributed energy sources, the advantages of smart buildings over traditional buildings are becoming increasingly obvious. Subsequently, its energy optimal scheduling and multi-objective optimization have become more and more complex and need to be solved urgently. This paper presents a novel method to optimize energy utilization in smart buildings. Firstly, multiple transfer-retention ratio (TRR) parameters are added to the evaluation of distributed renewable energy. Secondly, the normal-boundary intersection (NBI) algorithm is improved by the adaptive weight sum, the adjust uniform axes method, and Mahalanobis distance to form the improved normal-boundary intersection (INBI) algorithm. The multi-objective optimization problem in smart buildings is solved by the parameter TRR and INBI algorithm to improve the regulation efficiency. In response to the needs of decision-makers with evaluation indicators, the average deviation is reduced by 60% compared with the previous case. Numerical examples show that the proposed method is superior to the existing technologies in terms of three optimization objectives. The objectives include 8.2% reduction in equipment costs, 7.6% reduction in power supply costs, and 1.6% improvement in occupants' comfort.
Keyword:
Smart building
Renewable energy dispatch
Multi-objective optimization
Normal-boundary intersection algorithm
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期刊

Building and Environment 封面图
Building and Environment
IF:
7.6
论文数:
1.3W
被引数:
6.6W

机构

N
northeast electric power university
学者数:
5.8K
论文数: 3.3K
被引数: 1
S
Shenyang University of Technology
学者数:
5.0K
论文数: 3.3K
被引数: 3.4K