苏淮北, 曹俊, 沈鑫, 吴建东, 尹毅. 基于超低频场空间电荷响应的电缆状态评估[J]. 中国电机工程学报, 2022, 42(4): 1235-1242. DOI: 10.13334/j.0258-8013.pcsee.210088
引用本文: 苏淮北, 曹俊, 沈鑫, 吴建东, 尹毅. 基于超低频场空间电荷响应的电缆状态评估[J]. 中国电机工程学报, 2022, 42(4): 1235-1242. DOI: 10.13334/j.0258-8013.pcsee.210088
SU Huaibei, CAO Jun, SHEN Xin, WU Jiandong, YIN Yi. Cable State Assessment Technology Based on Space Charge Behavior Under Very Low Frequency Field[J]. Proceedings of the CSEE, 2022, 42(4): 1235-1242. DOI: 10.13334/j.0258-8013.pcsee.210088
Citation: SU Huaibei, CAO Jun, SHEN Xin, WU Jiandong, YIN Yi. Cable State Assessment Technology Based on Space Charge Behavior Under Very Low Frequency Field[J]. Proceedings of the CSEE, 2022, 42(4): 1235-1242. DOI: 10.13334/j.0258-8013.pcsee.210088

基于超低频场空间电荷响应的电缆状态评估

Cable State Assessment Technology Based on Space Charge Behavior Under Very Low Frequency Field

  • 摘要: 为评估超低频电场检测下电缆的绝缘状态,通过检测不同老化状态交联聚乙烯在50、0.1和0.01Hz正弦场下的空间电荷响应,分析超低频检测中空间电荷积累的电场阈值,并结合其理化和工频击穿等性能,探讨基于超低频场空间电荷响应的绝缘状态评估方法。结果表明:试样在50Hz电场下,未出现空间电荷积累的阈值电场,但0.1和0.01Hz电场下出现了阈值电场,其值约为10~15kV/mm。超低频电场下超过阈值电场后的180°相位处的平均体电荷密度和平均相位体电荷密度均明显增大,这主要与超低频场下有效作用电场的持续时间相关。在0.01Hz电场下老化试样的平均相位体电荷密度明显下降,试样表面侧的空间电荷由未老化时的异极性转为同极性,且其连续分布区域远大于未老化试样。这可能与老化后深陷阱量减少和浅陷阱量增多相关,两者均增大了电荷迁移率,抑制了空间电荷积累。随着老化程度的加深,试样在0.01Hz电场下的平均相位体电荷密度和击穿场强明显下降,这表明试样老化状态可由超低频场下的空间电荷表征。在采用超低频场空间电荷特性进行绝缘状态评估时,应综合空间电荷的积累量、极化和分布范围,结果可为超低频电场下电缆绝缘状态评估提供一定的理论基础。

     

    Abstract: In order to evaluate the insulation state of cables under very low frequency electric field detection, the electric field threshold of space charge accumulation in very low frequency detection was analyzed by measuring the space charge response of cross-linked polyethylene with different aging states under sinusoidal fields of 50, 0.1 and 0.01Hz. The insulation sate evaluation method was discussed with their physical properties and breakdown field. The results show that the specimen has no threshold inflection point for the space charge accumulation under 50Hz electric field, but a threshold field is observed under 0.1 and 0.01Hz electric fields, with a value of about 10~15kV/mm. The mean bulk charge density at 180° phase and the mean phase charge density increases significantly when the very low frequency field exceeds the threshold field, which was mainly related to the duration of the effective electric field under very low frequency field. The mean phase charge density of aged samples decreases significantly under 0.01Hz electric field, and the space charge on the surface of sample change from heterpolarity to homopolarity. The continuous distribution area is much larger than that of unaged samples. This may be related to the decrease of deep traps and to an increase of shallow traps, both of which increase the charge migration rate and inhibit the accumulation of space charges. As the aging degree deepens, the mean phase charge density and breakdown field strength of aged samples under 0.01Hz electric field decrease obviously, which indicates that the space charge under very low frequency fields can characterize the aging states of samples. The accumulation, polarization and distribution of the insulationspace charge should be integrated when the space charge characteristics of very low frequency field are used to evaluate state, providing a theoretical basis for the evaluation of cable insulation state under very low frequency electric field.

     

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