西安交通大学电工材料电气绝缘全国重点实验室,西安,710049
纸质出版:2025
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王威望, 吕佳鞠, 关子凌, 等. 高频陡脉冲电压对环氧树脂局部放电的影响及电老化寿命研究[J]. 高电压技术, 2025,51(6):2631-2640.
WANG Weiwang, LYU Jiaju, GUAN Ziling, et al. Effect of High Frequency Steep Pulsed Voltage on Partial Discharges and Electrical Aging Lifetime of Epoxy Resin[J]. 2025, 51(6): 2631-2640.
王威望, 吕佳鞠, 关子凌, 等. 高频陡脉冲电压对环氧树脂局部放电的影响及电老化寿命研究[J]. 高电压技术, 2025,51(6):2631-2640. DOI: 10.13336/j.1003-6520.hve.20240681.
WANG Weiwang, LYU Jiaju, GUAN Ziling, et al. Effect of High Frequency Steep Pulsed Voltage on Partial Discharges and Electrical Aging Lifetime of Epoxy Resin[J]. 2025, 51(6): 2631-2640. DOI: 10.13336/j.1003-6520.hve.20240681.
高频陡脉冲电场下的固体绝缘局部放电及寿命是高功率密度高频变压器设计与可靠性面临的挑战。该文以绝缘沿面放电模型为例,采用特高频局部放电测试方法,研究了高频方波下频率与陡脉冲参数(du/dt)对环氧树脂局部放电特性及寿命的影响,并建立了频率与du/dt耦合的高频方波电场下环氧树脂绝缘的寿命模型。采用高通滤波器,结合完全自适应噪声集合经验模态分解(complete ensemble empirical mode decomposition with adaptive noise,CEEMDAN)和小波降噪得到了去噪后的局部放电信号。研究结果表明,随着方波电压频率和du/dt的增加(1~20 kHz),局部放电幅值逐渐减小。另外,不同du/dt下环氧树脂低频的局部放电幅值差距越大,研究认为这与电荷衰减速率有关,高du/dt下局部放电更集中,放电幅值小。环氧树脂的绝缘寿命随方波电压频率的增加明显减小,随du/dt的增加也有所减小。通过正交实验与耦合因子分析,建立了高频方波下频率和du/dt耦合寿命模型,模型结果与实验对比误差小于3%,验证了寿命模型的准确性。该研究对高功率高频变压器的绝缘设计与应用具有重要意义。
Partial discharges (PDs) of solid insulation and lifetime under high-frequency electric stress with steep pulse pose challenges for the design and reliability of high-power density and high-frequency transformers. In this paper
the insulation surface discharge model was taken as an example
and the ultra-high frequency PD measurement method was used to study the influence of frequency and steep pulse parameter (du/dt) of high-frequency square wave on the surface PDs and lifetime of epoxy resin. A lifetime model for epoxy resin insulation under high-frequency square voltage coupling with frequency and du/dt was also established. The denoised PDs signal was obtained through the utilization of a high-pass filter
in conjunction with complete ensemble empirical mode decomposition with adaptive noise (CEEMDAN) and wavelet denoising techniques. The research results indicate that the amplitude of PDs gradually decreases with the increase in square wave voltage frequency and du/dt increase (1~20 kHz). In addition
the lower the frequency is
the greater the difference in PDs amplitude of epoxy resin under different du/dt will be. It is related to the rate of charge decay
where PDs become more concentrated and the discharge amplitude is smaller under high du/dt condition. The lifetime of epoxy resin insulation significantly decreases with an increase in square wave voltage frequency
and it also decreases with an increase in du/dt. Moreover
the lifetime model with frequency and du/dt coupling is established using orthogonal experiments and coupling factor analysis. A comparison between the model results and experimental data reveals an error of less than 3%
confirming the accuracy of the proposed lifetime model. This investigation presents significant implication in the insulation design and application of high-power high-frequency transformers.
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