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[1] XU L, ZHANG D, HE W, et al. Microwave near-field imaging for refined characterization of localized moisture in oil-paper insulation[J]. Measurement, 2026, 280: 121839.
[2] WANG S, ZHANG D, TIAN W, et al. Mechanical properties and quantitative analytical modelling of micro/nanocellulose co-modified insulating papers with different aspect ratios[J]. High Voltage, 2026: 1-12.
[3] TIAN W, ZHAO H, MU H, YAO H, YANG X, DONG J, ZHANG D, ZHANG G. In situ natural-ester-grafted coating extends cellulose insulation paper service life: Hydrophobicity and thermal-aging resistance for high-voltage equipment[J]. Chemical Engineering Journal, 2026, 534: 175137.
[4] ZHANG D, WANG S, JIANG J, et al. Enhancement of mechanical and electrical properties of multilayer composite nanocellulose-modified insulating paper[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2026, 33(1): 257-266.
[5] ZHANG D, WANG S, ZHAI X, et al. Enhancement of boron nitride nanosheet/cellulose nanofiber modified laminated insulating paper[J]. AIP Advances, 2025, 15(6): 065017.
[6] ZHANG D, FENG X, JIANG J, et al. Preparation method and performance study of nanocellulose/epoxy resin composite materials modified by multiple approaches[J]. High Voltage, 2025, 10(5): 1083-1098.
[7] YANG X, ZHANG D, XU L, et al. Research on the moisture distribution of oil-paper insulating bushing based on polarity reversal PDC[J]. AIP Advances, 2025, 15(7): 075338.
[8] XU L, YANG X, JIANG J, LI C, FENG X, ZHANG D, MU H, ZHANG G. Microstrip petal-like split ring resonator for moisture condition assessment of oil-paper insulation[J]. High Voltage, 2025, 10(4): 820-830.
[9] TIAN W, ZHANG D, YAO H, et al. Temperature normalisation and moisture assessment of oil-paper insulation based on dielectric response in extremely cold conditions[J]. High Voltage, 2025, 10(4): 903-916.
[10] TIAN W, ZHANG D, XU L, et al. Degradation behavior of resin-impregnated paper composites in DC bushings under extreme thermal cycling: From mechanisms to lifetime assessment[J]. Polymer Degradation and Stability, 2025, 242: 111687.
[11] PENG J, ZHANG R, LI S, ZHANG D, DENG J. A novel damped AC generator used for off-line partial discharge testing of power cables[J]. IEEE Transactions on Power Delivery, 2025, 40(4): 2278-2288.
[12] ZHANG D, ZHAI X, WANG S, et al. Study on mechanical and electrical properties improvement of insulating paper modified by cellulose nanocrystals[J]. Journal of Applied Physics, 2024, 136(12): 125108.
[13] ZHANG D, XU H, YANG D, et al. Study on the aging characteristics of PET for SF6 gas-insulated transformer[J]. AIP Advances, 2024, 14(7): 075019.
[14] ZHAI X, ZHANG D, LI X, et al. Enhancement and prediction of mechanical properties of microcellulose/nanocellulose-modified insulating paper[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2024, 31(5): 2642-2651.
[15] XU L, ZHANG D, JIANG J, MU H, ZHANG G. Dielectric response characteristics and moisture exposure evaluation of oil-paper insulation based on microstrip ring resonator[J]. Measurement, 2024, 234: 114770.
[16] ZHAO H, ZHAN J, YUN H, MU H, ZHANG D, et al. Deciphering the intricate dielectric relaxation processes of cellulose paper: Extraction of distribution of relaxation time and analysis of degradation characteristics[J]. Carbohydrate Polymers, 2024, 324: 121497.
[17] 徐海松, 张大宁, 胡冉, 等. 基于谐波分量的配电电缆绝缘劣化状态带电检测技术[J]. 电工技术学报, 2024, 39(7): 2161-2173.
[18] WANG Y, XU H, WANG A, HUANG K, WANG G, LU X, ZHANG D. Cable insulation defect prediction based on harmonic anomaly feature analysis[J]. Electronics, 2024, 13(19): 3807.
[19] HU R, XU H, LU X, WANG A, XU Z, WANG Y, ZHANG D. Research on live detection technology of distribution network cable insulation deterioration state based on harmonic components[J]. IET Generation, Transmission & Distribution, 2024, 18(17): 2847-2859.
[20] ZHANG D, XU L, WU M, et al. Improved microstrip ring resonator for dielectric response tests and moisture evaluation of oil-impregnated pressboard[J]. Review of Scientific Instruments, 2023, 94(10).
[21] ZHANG D, XU L, TIAN W, et al. A fast dielectric response measurement instrument with dynamic power supply tracking and active suppression of temperature fluctuations[J]. IEEE Transactions on Industrial Electronics, 2023, 70(12): 12839-12850.
[22] ZHANG D, TIAN W, LI X, et al. Temperature correction method for dielectric response of high moisture content and aging degree oil impregnated paper based on segmented activation energy[J]. AIP Advances, 2023, 13(4).
[23] ZHANG D, FENG X, YANG Z, et al. Study on water absorption and dielectric response of epoxy resin impregnated paper bushing[J]. IET Generation, Transmission & Distribution, 2023, 17(17): 3789-3800.
[24] YAO H, ZHAN J, MU H, et al. Dielectric characteristic analysis and insulation state evaluation of packaging material for power module with different aging degrees[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2024, 31(1): 513-522.
[25] YAO H, MU H, LI W, et al. Two-stage electric field optimization method for high-voltage power module using dielectrically graded insulation micro-region[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2023, 30(3): 1005-1015.
[26] ZHAO H, MU H, ZHANG D, et al. Mechanism study of the conductivity characteristics of cellulose electrical insulation influenced by moisture[J]. Journal of Applied Physics, 2022, 132(21).
[27] MU H, ZHANG H, ZOU X, ZHANG D, LU X, ZHANG G. Sensitivity improvement in cable faults location by using broadband impedance spectroscopy with Dolph-Chebyshev window[J]. IEEE Transactions on Power Delivery, 2022, 37(5): 3846-3854.
[28] ZHAO H, MU H, ZHANG D, et al. Analysis of FDS characteristics of oil-impregnated paper insulation under high electric field strength based on the motion of charge carriers[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2021, 28(4): 1153-1161.
[29] ZHANG R, YAO H, MU H, et al. Dielectric frequency response of oil-paper insulation under uneven damp[C]//IET Conference Proceedings CP787, 2021: 746-751.
[30] YAO H, MU H, DING N, et al. Evaluation method for moisture content of oil-paper insulation based on segmented frequency domain spectroscopy: From curve fitting to machine learning[J]. IET Science, Measurement & Technology, 2021, 15(6): 517-526.
[31] 穆海宝, 赵浩翔, 张大宁, 等. 变压器油纸套管多参量智能感知技术研究[J]. 高电压技术, 2020, 46(6): 1903-1912.
[32] ZHANG D, ZHAO H, YUN H, et al. Study on FDS characteristics of oil-immersed paper insulation bushing under non-uniform moisture content[J]. IET Science, Measurement & Technology, 2018, 12(5): 691-697.
[33] ZHANG D, YUN H, ZHAN J, et al. Insulation condition diagnosis of oil-immersed paper insulation based on non-linear frequency-domain dielectric response[J]. IEEE Transactions on Dielectrics and Electrical Insulation, 2018, 25(5): 1980-1988.
[34] LIU J, ZHANG D, WANG M, HUANG L, ZHAO D. A cascaded linear high-voltage amplifier circuit for dielectric measurement[J]. IEEE Transactions on Industrial Electronics, 2016, 63(3): 1834-1841.