Min NiuQuoc V. LeRd. Rohmat SaedudinS BanihashemiG DingJ WangK AmasyaliN El-GoharyP ShaikhN B M NorP NallagowndenMonaem ElmnifiMoneer AlshilmanyMoftah AbdrabaS GugulothuN Prabhu KishoreV BabuGirish SapreDayong XuShahed Shahajada Mahmudul HasanMd Hasan Khan TusharAnisur Hafizur RahmanRahman ShimuNigar AliSaeed AhmadSartaj AzizGul ZamanK EltagM AslamxR UllahY SunS LiB LinH ChuaY LimS MorrisJ LiL SunY LiD ZhangJ A K MohammedF M MohammedM A S JabbarT KosakaK KoyanagiY SatakeM LiuQ GuoG Zhang
This research aims to analyze the optimization value of intelligent control algorithm in the design of automatic variable air volume control system of central air conditioning, to improve the technology of central air conditioning and reduce the energy consumption of air conditioning.In this research, starting from analyzing the operation characteristics of variable air volume system of central air conditioning, a controller based on fuzzy intelligent control algorithm is proposed, and a terminal controller model based on intelligent control algorithm is established to design a new variable air volume automatic control system for central air conditioning.Besides, its performance is compared with that of central air conditioning system based on traditional proportion integration differentiation (PID) control algorithm.The results show that the automatic variable air volume control system of central air conditioning designed in this research based on the intelligent control algorithm has better energy saving effect.The application of fuzzy intelligent control algorithm improves the performance of the control system, reduces the power consumption of the central air-conditioning system, and optimizes the energy utilization efficiency.In this study, the intelligent control technology has been expanded to the national call for energy conservation and emission reduction, and the application of intelligent control algorithm to the variable air volume control system of central air conditioning has important practical significance, laying a foundation for the development of follow-up high-performance air conditioning system.