A Multi-load balancing control strategy for a novel low carbon integrated energy system for buildings
Abstract
With the escalating global energy demand and the pressing need for clean energy, innovations in building energy systems are crucial. This paper proposes a Multi - load Balancing Control Strategy (MLBS) based on the Improved Tuna Swarm Optimization (ITSO) algorithm. By integrating battery and compressed air energy storage, the strategy enhances the building energy system’s flexible dispatch capability.A building complex in Huai’an, Jiangsu is used as a case study. Two cases are compared: one without MLBS and the other with MLBS using a low - carbon economic dispatch model. Results show that MLBS effectively adjusts electric and thermal loads. After applying MLBS and the low - carbon economic dispatch strategy, the quarterly planning cost drops to 110.37 million, the operating cost to 204.28 tons, the carbon trading cost to 8.15 million, and the total carbon emission to 137.27 million, significantly lower than the values without the strategy. Moreover, the TSO - MLBS energy scheduling strategy adopted in this paper has the shortest computation time and lower energy scheduling cost, offering a double improvement in economic efficiency and carbon emission reduction.
Article Details
Authors (9)
Wenjie Wang
State Key Laboratory of Chemical Engineering and Low-Carbon Technology, School of Chemical Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China
Yefan Shu
Zhengyu Wang
School of Clinical Medicine, Shandong Second Medical University
Chenliang Ji
Hui Huang
Center of Basic Molecular Science (CBMS), Department of Chemistry
Rundong Ji
Mengxiong Zhou
Yaodong Wang
Jie Ji
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry