家电科技 ›› 2022, Vol. 0 ›› Issue (zk): 686-693.doi: 10.19784/j.cnki.issn1672-0172.2022.99.153

• 第五部分 健康适老与智能 • 上一篇    下一篇

基于软件算法提升洗衣干衣机智能判干性能的尝试与研究

李鸿鹏, 于彩侠   

  1. TCL家用电器(合肥)有限公司 安徽合肥 230000
  • 发布日期:2023-03-28
  • 作者简介:李鸿鹏,工程硕士学位。研究方向:洗衣机性能开发。地址:安徽省合肥市云湖路10号 TCL家用电器(合肥)有限公司。E-mail:lihongpeng@tcl.com。

Attempt and research on improving intelligent drying performance of household washer and dryers based on software algorithm

LI Hongpeng, YU Caixia   

  1. TCL Home Appliances (HeFei) Co., Ltd. Hefei 230000
  • Published:2023-03-28

摘要: 以热力学比热公式和理想状态方程为理论依据,将洗干一体机简化为理想状态模型,借用其在整个烘干过程中水加热管NTC的温度曲线变化,可以得到织物含水量与烘干时间的函数关系,在大量实验数据基础上,推导出织物烘干的总时间;同时在最后烘干阶段筒内温度会随织物水分的大量蒸发,相较于动态平衡期温度有一定幅度的减小。基于此对大量实测数据进行整理归纳,得到织物最终含水状态与此温度差值的函数关系。基于以上两种判干逻辑,建立数学方程模型,通过软件优化组合判定,最终实现双重智能判干,极大满足用户烘干体验。

关键词: 软件算法, 温度补偿, 拟合方程, 稳态温度, 双重判干

Abstract: Based on the thermodynamic specific heat formula and the ideal state equation, simplified the washing drying machine into an ideal state model. By using the temperature curve change of NTC in the water heating tube during the whole drying process, we can obtain the functional relationship between the fabric moisture content and the drying time. On the basis of a large number of experimental data, the total drying time of the fabric is derived; At the same time, in the final drying stage, the temperature in the cylinder will evaporate with a large amount of fabric moisture, which will reduce to a certain extent compared with the temperature in the dynamic equilibrium period. Therefore, we collected a large number of experimental data and summarized the functional relationship between the final moisture state of the fabric and this temperature difference. Based on the above two kinds of intervention judgment logics, a mathematical equation model is established. Through software optimization and combination, the dual intelligent intervention judgment is finally realized, which greatly meets the user's drying experience.

Key words: Software algorithm, Temperature compensation, Fitting equation, Steady-state temperature, Double judgement

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