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Research and application of electroscope identification for UHV transmission and transformation equipment based on electroctiromic materials

机译:基于电触发材料的UHV变速器和转化设备的验光识别研究与应用

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At present, due to the relatively large insulation gap of UHV(Ultra High Voltage) equipment, the traditional hand-held capacitive electroscope is difficult to operate; the non-contact electroscope is mainly based on the principle of electromagnetic induction, and the reliability is poor in complex areas such as substations and other electromagnetic environments. The power verification problem of AC/DC UHV transmission and transformation equipment has not been effectively solved. In order to optimize and solve the above problems, this research conducts performance testing and reliability analysis for new inorganic electrochromic materials, and uses the color change of inorganic materials to indicate the electrification state of power transmission and transformation equipment, thereby realizing the electricity inspection function. In this project, ZnS Electro-luminescent materials and GaN luminescent materials were prepared, which were packaged into electroscope identification, and the application scheme of electroscope identification on UHV power transmission and transformation equipment was determined. The field practice shows that the electroscope identification prepared by this project can realize spontaneous luminescence discoloration in the electric field, and can effectively indicate the charging state of the equipment, and the effect is very obvious. Thereby effectively solving the problem of power inspection of UHV power transmission and transformation equipment. The economic and social benefits are huge and the application prospects are wide.
机译:目前,由于UHV(超高压)设备的绝缘间隙相对较大,传统的手持式电容电流难以操作;非接触式电镜主要基于电磁感应原理,可靠性在诸如变电站等电磁环境的复杂区域中差。 AC / DC UHV变速器和转换设备的电力验证问题尚未得到有效解决。为了优化和解决上述问题,该研究对新的无机电致变色材料进行了性能测试和可靠性分析,并使用无机材料的颜色变化来指示电力传输和变换设备的电气化状态,从而实现电力检查功能。在该项目中,制备ZnS电发光材料和GaN发光材料,将其包装成验光识别,确定了UHV电力传输和转换设备上的静电识别应用方案。现场实践表明,该项目制备的电镜鉴定可以实现电场中的自发发光变色,并且可以有效地指示设备的充电状态,效果非常明显。因此有效解决了UHV电力传输和转换设备的功率检查问题。经济和社会福利是巨大的,申请前景广泛。

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