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The Transactions of the Korean Institute of Electrical Engineers
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Trans. Korean. Inst. Elect. Eng.
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2020-04
(Vol.69 No.4)
10.5370/KIEE.2020.69.4.586
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References
1
Y. Zhang, K. Yu, D. Jiang, Z. Zhu, H. Geng, L. Luo, 2005, Zinc oxide nanorod and nanowire for humidity sensor, Applied Surface Science, Vol. 242, pp. 212
2
K. Karimov, K. Cheong, M. Saleem, I. Murtaza, M. Farooq, A. Noor, 2010, Ag/PEPC/NiPc/ZnO/Ag thin film capacitive and resistive humidity sensors, Journal of Semiconductors, Vol. 31, pp. 054002
3
K. Karimov, G. Bajracharya, D. Djairam, 2009, Defining a transformers aging factors in the future, International Conference on Electricity Distribution, pp. 731
4
M. Arshad, S. Islam, A. Muhammad, 2004, Power transformer aging and life extension, International Conference on Probabilistic Methods Applied to Power Systems, pp. 498
5
M. Gutten, D. Korenciak, 2012, Analysis of humidity influence in a transformer model, Przglad Electrotechniczny, Vol. 88, pp. 302
6
R. Villarroel, D. Garcia, J. Buros, J. Burgos, 2014, Diffusion coefficient in transformer pressboard insulation part 2: mineral oil impregnated, IEEE Transactions on Dielectrics and Electrical Insulation, Vol. 21, pp. 394
7
A. Bychkov, S. Korobeynikov, A. Ryzhkina, 2011, Determination of the hydrogen diffusion coefficient in transformer oil, Technical Physics, Vol. 56, pp. 421
8
Z. Ahmad, F. Touati, Q. Zafar, M. Shah, 2017, Integrated capacitive and resistive humidity transduction via surface type nickel phthalocyanine based sensor, Int. J. Electrochem. Sci, Vol. 12, pp. 3012
9
I. Oladimeji, H. Sabo, A. Sulyman, 2019, Design of wheatstone bridge based thermistor signal conditioning circuit for temperature measurement, Journal of Engineering Science and Technology Review, Vol. 12, pp. 12
10
V. Kondalkar, Y. Lee, K. Lee, 2019, Development of highly sensitive and stable humidity sensor for real-time monitoring of dissolved moisture in transformer-insulating oil, Sensors and Actuators B: Chemical, Vol. 286, pp. 377
11
Z. Lou, D. Wu, K. Bu, T. Xu, Z. Shi, J. Xu, Y. Tian, X. Li, 2017, Dual-mode high-sensitivity humidity sensor based on MoS2/Si nanowires array heterojunction, Journal of Alloys and Compounds, Vol. 726, pp. 632
12
D. Zhang, Y. Sun, Y. Zhang, 2016, Facile Fabrication of MoS2-Modified SnO2 Hybrid Nanocomposite for Ultrasensitive Humidity Sensing, Applied Materials & Interfaces, Vol. 8, pp. 14142
13
Z. Lu, Y. Gong, X. Li, Y. Zhang, 2016, MoS2-modified ZnO quantum dots nanocomposite: Synthesis and ultrafast humidity response, Applied Surface Science, Vol. 399, pp. 330
14
D. Burman, R. Ghosh, S. Santra, P. Guha, 2016, Highly proton nanocomposite conducting based MoS2/graphene oxide chemoresistive humidity sensor, Royal Society of Chemistry, Vol. 6, pp. 57424
15
M. Vakilian, B. Majlis, 2014, Study of Interdigitated Electrode Sensor for Lab-on-Chip Applications, IEEE-International Conference on Semiconductor Electronics, Vol. 201, pp. 201
16
H. Oh, W. Wang, K. Lee, I. Park, S. Yang, 2008, Sensitivity improvement of wireless pressure sensor by incorporating a SAW reflective delay line, Int. J. Smart Sens. Intell. Syst., Vol. 1, pp. 940
17
M. Nam, S. Kim, M. Kang, S. Kim, K. Lee, 2012, Efficiency enhancement in organic solar cells by configuring hybrid interfaces with narrow bandgap PbSSe nanocrystals, Organic Elecronics, Vol. 13, pp. 1546
18
K. Lee, W. Wang, G. Kim, S. Yang, 2006, Surface acoustic wave based pressure sensor with ground shielding over cavity on 41 YX LiNbO3, Japanese Journal of Applied Physics, Vol. 45, pp. 5974