Design of temperature-sensitive garment consisting of full fabric sensing networks

被引:0
|
作者
Chen H. [1 ]
Wang X. [2 ]
Ding X. [1 ]
Li Q. [1 ]
机构
[1] College of Textiles, Donghua University, Shanghai
[2] College of Information Science and Technology, Donghua University, Shanghai
来源
关键词
Data acquisition system; Full fabric sensing network; Intelligent textiles; Temperature-sensitive garment; Textile sensor;
D O I
10.13475/j.fzxb.20190305007
中图分类号
学科分类号
摘要
In order to realize real-time monitoring of human skin temperature, this research aims to create temperature-sensitive garment with a full fabric sensing network, making use of the differences in skin temperature distribution of different parts of the human body and the requirements for repeatability and comfort of temperature-sensitive clothing, on the basis of in-depth study of existing monitoring techniques. The array arrangement model of regional sensor network and the design method of data acquisition and storage system finally prepare the temperature-sensitive clothing based on the full fabric sensing network. It is proved that the whole fabric temperature-sensing network offers high stability after tensile recovery of the fabric. By testing the temperature sensitivity of temperature-sensitive clothing and evaluating its repeatability and comfort, it demonstrated high sensitivity and good practicability. The portable data acquisition and storage system was developed through comprehensive comparison of practicability between different data acquisition modules. Finally, combined with the data acquisition system, monitoring of the human skin temperature is succeeded in real time using the temperature sensitive clothing. It is proved that the breathing state of the human body can be tracked through the curve of the human body temperature, and the comfort requirement is satisfied. Copyright No content may be reproduced or abridged without authorization.
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页码:118 / 123and129
相关论文
共 11 条
  • [1] Li Q., Zhang L., Tao X., Et al., Review of flexible temperature sensing networks for wearable physiological monitoring, Advanced Healthcare Materials, 6, 12, (2017)
  • [2] Li Q., Chen H., Ran Z., Et al., Full fabric sensing network with large deformation for continuous detection of skin temperature, Smart Materials and Structures, 27, 10, (2018)
  • [3] Yan N., Zhang H., Deng Y., Research progress and development trend of wearable medical monitoring clothing, Journal of Textile Research, 36, 6, pp. 162-168, (2015)
  • [4] Li W., Liu J., Temperature monitoring of patients with acute drug poisoning, Journal of Nursing, 17, 9, pp. 679-680, (2002)
  • [5] Liu J., Cao H., Ma S., Monitoring and nursing of potoperative body temperature during cardiopulmon-ary bypass surgery, Journal of Aerospace Medicine, 22, 7, pp. 875-876, (2011)
  • [6] Shu L., Hua T., Wang Y., Et al., In-shoe plantar pressure measurement and analysis system based on fabric pressure sensing array, IEEE Transactions on Information Technology in Biomedicine, 14, 3, pp. 767-775, (2010)
  • [7] Liu Y., Cong S., Research progress of wearable technology in human health monitoring, Journal of Textile Research, 39, 10, pp. 180-184, (2018)
  • [8] Ma L., Subjective analysis of differences in the sense of coldness in the trunk of the human body, Art Education, 1, pp. 196-197, (2014)
  • [9] Wang X., Tao X., So R.C.H., Et al., Monitoring elbow isometric contraction by novel wearable fabric sensing device, Smart Materials & Structures, 25, 12, (2016)
  • [10] Sun X., Liu H., Electrocardiogram information extraction of respiratory waves, China Circulation Magazine, pp. 158-159, (2015)