综合智慧能源

• •    

光伏驱动空调及其建筑应用研究进展

蔡阳, 郑善乐, 黄颖茜, 刘子全, 安荣邦   

  1. 暨南大学, 广东 中国
  • 收稿日期:2025-06-19 修回日期:2025-08-27

Research Progress on Photovoltaic-driven Air Conditioning and Its Application in Buildings

  1. , , China
  • Received:2025-06-19 Revised:2025-08-27

摘要: 光伏驱动空调(Photovoltaic driven air conditioner,PVAC)系统通过整合可再生能源与建筑热管理,为降低建筑能耗与推进碳中和目标提供了创新路径。本文系统梳理了PVAC系统的技术原理与分类特征,基于驱动机制将其划分为交流驱动、直流直驱及混合驱动三类,并综述了其在能量传递优化、动态控制策略及多参数协同设计等方面的研究进展。研究表明,优化后的PVAC系统在夏季高温地区可实现光伏发电与制冷需求的高效匹配,空调能耗覆盖率提升至29.5%,而集成相变材料与变速压缩机的系统方案可提升实时零能量概率达50%以上。该研究将为PVAC系统性能强化及其建筑大规模应用提供新的思路与方法。

关键词: 光伏驱动空调, 建筑节能, 参数特性和评价指标, 控制策略, 光伏建筑一体化

Abstract: Photovoltaic driven air conditioner (PVAC) systems offer an innovative path to reducing building energy consumption and advancing carbon neutrality by integrating renewable energy with building thermal management. This paper systematically reviews the technical principles and classification characteristics of PVAC system, divides it into AC drive, DC direct drive and hybrid drive based on the driving mechanism, and reviews its research progress in energy transfer optimization, dynamic control strategy and multi-parameter collaborative design. The research shows that the optimized PVAC system can achieve efficient matching of photovoltaic power generation and refrigeration demand in high temperature areas in summer, and the energy consumption coverage of air conditioning can be increased to 29.5%, and the system scheme integrating phase change materials and variable speed compressor can increase the real-time zero energy probability by more than 50%. This research will provide a new idea and method for the performance enhancement of PVAC system and its large-scale application in construction.

Key words: Photovoltaic drive air conditioning, Building energy efficiency, Parameter characteristics and evaluation index, Control strategy, BIPV