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The Measurement of the Voltage Distribution along High Voltage Suspension Porcelain (5-6-7 insulator)/string in Case of Clean Condition

机译:在清洁条件下,沿高压悬架瓷器(5-6-7绝缘体)/弦电压分布的测量

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The operational voltage or the voltage distribution along porcelain insulator string is affected by stray capacitances, which causes a non-uniform voltage distribution. The recital of insulator sometimes depends on the amount of insulator/string. In order to explain these activities and phenomena clearly in this research, an equivalent circuit that takes the insulator material properties and the stray capacitances is implemented in the TINA program package to analyze the voltage distribution along the insulator string with and without guard ring under power frequency voltage. Finally, the simulation results of voltage distribution have been compared with experimental results, which were obtained in the KKU High Voltage Research Laboratory. To investigate the voltage along across each (5, 6, 7) insulator/string in clean condition, the string efficiency has been measured by sphere gap method. From the simulation results, the voltage across (5, 6, 7 clean and contaminated insulator/string) with and without guard ring were simulated by the TINA program. From this simulation results, we found that the string efficiency of clean string insulator condition which the insulator consists of 5, 6, 7 insulator/string without guard ring equals 66.92, 58.45 and 53.71%, respectively. The string efficiency which the insulator consists of 5, 6, 7 insulator/string with guard ring equals 90.42, 87.03 and 78.35%, respectively. In the experiment, the sphere gap was used to measure the voltage along insulation string. In case of the clean string insulator condition, the string efficiency which the insulator consists of 5, 6, 7 insulator/string without guard ring equals 69.12, 62.67 and 57.04%, respectively. The string efficiency which the insulator consists of 5, 6, 7 insulator/string with guard ring equals 76.36, 66.69 and 59.76%, respectively.
机译:沿瓷绝缘体串的操作电压或电压分布受杂散电容的影响,这导致不均匀的电压分布。绝缘体的谱系有时取决于绝缘体/串的量。为了在本研究中清楚地解释这些活动和现象,在TINA程序包中实现了采用绝缘体材料特性和杂散电容的等效电路,以分析沿着绝缘子串的电压分布,在功率频率下没有防护环电压。最后,将电压分布的仿真结果与实验结果进行了比较,在KKU高压研究实验室中获得。为了沿着清洁条件下的每个(5,6,7)绝缘体/串的电压沿着各(5,6,7)的电压,通过球形间隙方法测量弦效。从仿真结果,通过TINA程序模拟了具有和无防护环的(5,6,7个清洁和受污染的绝缘体/串)的电压。从这个仿真结果来看,我们发现绝缘子由5,6,7绝缘子/串组成的清洁弦绝缘子条件的弦效率分别等于66.92,58.45和53.71%。绝缘体由5,6,7绝缘体/弦组成的弦效,带防护环等于90.42,87.03和78.35%。在实验中,球形间隙用于测量沿绝缘串的电压。在清洁弦绝缘体条件下,绝缘体由5,6,7绝缘体/串组成的弦效,没有防护环等于69.12,62.67和57.04%。绝缘体由5,6,7绝缘体/串组成的弦效,分别等于76.36,66.69和59.76%。

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