Suzhou Electric Appliance Research Institute
期刊号: CN32-1800/TM| ISSN1007-3175

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温度对配电一二次融合成套设备测量准确度影响

来源:电工电气发布时间:2023-03-04 10:04 浏览次数:262

温度对配电一二次融合成套设备测量准确度影响

赵海洋,滕达,姜晓君,侯永涛
(中讯邮电咨询设计院有限公司,北京 100048)
 
    摘要:配电网一二次设备融合后,二次设备因长期处于一次高温环境中,其内部电子器件性能易受温度影响。分析了温度对二次设备内元件及信号调理电路的影响,基于高低温试验环境箱搭建了试验测试平台,通过采集二次设备互感器的比值差和相位差进行测量精准度的对比分析,为提高测量精准度,提出采用非线性软件补偿方式,并进行了软件算法原理分析和试验验证。试验结果表明,取样电阻和差分运算放大电路的温度相关系数是影响二次设备采集准确度的关键,温度变化会造成二次设备的测量准确度下降,在高温60 ℃、低温-30 ℃左右已不能满足配电开关的要求,加入非线性软件补偿后比值差变化在0.15%~0.3% 之间波动,可以有效提高测量准确度。
    关键词: 配电网;温度变化;一二次融合;测量准确度;二次设备
    中图分类号:TM642     文献标识码:B     文章编号:1007-3175(2023)02-0057-06
 
Temperature Effect on Measuring Accuracy of Primary and
Secondary Fusion Equipment of Distribution Network
 
ZHAO Hai-yang, TENG Da, JIANG Xiao-jun, HOU Yong-tao
(China Information Technology Designing & Consulting Institute Co., Ltd, Beijing 100048, China)
 
    Abstract: The performance of internal electronic devices of the secondary equipment is susceptible to temperature because the secondary equipment has been in the primary high temperature environment for a long time after primary and secondary fusion of the distribution network. The paper analyzes temperature effects on internal devices of the secondary equipment and signal conditioning circuit, and it also establishes a test platform based on the high and low temperature environmental chamber. The measuring accuracy is compared and analyzed by collecting ratio error and phase difference of the secondary equipment transducers. Moreover, the paper puts forward a nonlinear software compensation method and conducts the software algorithm principle analysis and test verification to increase the measuring accuracy. The results show that the temperature correlation coefficient of sampling resistance and differential operational amplifier circuit are the key factors to acquisition accuracy of the secondary equipment. Temperature variation decreases measuring accuracy of the secondary equipment. It cannot meet the requirement of distribution switches at high temperature of 60 ℃ and low temperature of -30 ℃. The measuring accuracy can be effectively increased by employing the nonlinear software compensation method which ensures the fluctuation of the ratio error between 0.15% and 0.3%.
    Key words: distribution network; temperature variation; primary and secondary fusion; measuring accuracy; secondary equipment
 
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