根据合同功率选择电流互感器(CT)比优化千瓦时高压用户交易的准确性

Soetjipto Soewono, Nanang Hadi
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When the contracted power of 120 MVA can be used CT class 0.2s ratio 400/1 and 800/1 ratio, when using CT class 0.2s ratio 400/1 then the kwh meter can be set according to the CT ratio that is the ratio 400/1 because CT ratio 400/1 has a negative error ratio at loads below 73.59%, and positive error ratio at loads over 73.59% up to 100% load, and` when using CT class 0.2s ratio 800/1 then the kwh meter can set a CT ratio of 800 / 0.98 because CT ratio 800/1 has a positive error ratio of 0.02% from 1% load to 100% load, so that it does not harm the customer as a positive CT ratio error tolerance . 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引用次数: 0

摘要

随着用电量的较大增长,特别是高压用户,通过研究电流互感器(CT) 400/1和800/1的R、S、T相错误率,了解电流互感器(CT)错误率对千瓦时电量交易精度的影响对PLN来说非常重要。当收缩功率为120 MVA时,可采用0.2s级电流互感器400/1和800/1的比例,当采用0.2s级电流互感器400/1的比例时,可根据电流互感器400/1的比例设置电能表,因为电流互感器400/1的比例在负荷低于73.59%时为负错误率,在负荷大于73.59%时为正错误率,直到100%负荷。当使用电流互感器等级为0.2s比800/1时,电能表可以设置电流互感器比800/ 0.98,因为电流互感器比800/1从1%负荷到100%负荷的正误差率为0.02%,因此作为正的电流互感器比误差容限不会伤害用户。这样做是为了在kwh交易的计算中在PLN和高压用户之间创造公正。随着用电量的较大增长,特别是高压用户,通过研究电流互感器(CT) 400/1和800/1的R、S、T相错误率,了解电流互感器(CT)错误率对千瓦时电量交易精度的影响对PLN来说非常重要。当收缩功率为120 MVA时,可采用0.2s级电流互感器400/1和800/1的比例,当采用0.2s级电流互感器400/1的比例时,可根据电流互感器400/1的比例设置电能表,因为电流互感器400/1的比例在负荷低于73.59%时为负错误率,在负荷大于73.59%时为正错误率,直到100%负荷。当使用电流互感器等级为0.2s比800/1时,电能表可以设置电流互感器比800/ 0.98,因为电流互感器比800/1从1%负荷到100%负荷的正误差率为0.02%,因此作为正的电流互感器比误差容限不会伤害用户。这样做是为了在kwh交易的计算中在PLN和高压用户之间创造公正。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ACCURACY OPTIMIZATION OF KWH HIGH VOLTAGE CONSUMER TRANSACTIONS WITH SELECTION OF CURRENT TRANSFORMER (CT) RATIO IN ACCORDANCE WITH CONTRACTED POWER
The greater growth of electricity consumption, especially for high voltage consumers, it is important for PLN to know the effect of the current transformer (CT) error ratio in the accuracy of the kwh of electricity transactions, by researching the error ratio of CT 400/1 and 800/1 R, S, and T phase. When the contracted power of 120 MVA can be used CT class 0.2s ratio 400/1 and 800/1 ratio, when using CT class 0.2s ratio 400/1 then the kwh meter can be set according to the CT ratio that is the ratio 400/1 because CT ratio 400/1 has a negative error ratio at loads below 73.59%, and positive error ratio at loads over 73.59% up to 100% load, and` when using CT class 0.2s ratio 800/1 then the kwh meter can set a CT ratio of 800 / 0.98 because CT ratio 800/1 has a positive error ratio of 0.02% from 1% load to 100% load, so that it does not harm the customer as a positive CT ratio error tolerance . This needs to be done in order to create justice between PLN and high voltage consumers in the calculation of kwh transactions.The greater growth of electricity consumption, especially for high voltage consumers, it is important for PLN to know the effect of the current transformer (CT) error ratio in the accuracy of the kwh of electricity transactions, by researching the error ratio of CT 400/1 and 800/1 R, S, and T phase. When the contracted power of 120 MVA can be used CT class 0.2s ratio 400/1 and 800/1 ratio, when using CT class 0.2s ratio 400/1 then the kwh meter can be set according to the CT ratio that is the ratio 400/1 because CT ratio 400/1 has a negative error ratio at loads below 73.59%, and positive error ratio at loads over 73.59% up to 100% load, and` when using CT class 0.2s ratio 800/1 then the kwh meter can set a CT ratio of 800 / 0.98 because CT ratio 800/1 has a positive error ratio of 0.02% from 1% load to 100% load, so that it does not harm the customer as a positive CT ratio error tolerance . This needs to be done in order to create justice between PLN and high voltage consumers in the calculation of kwh transactions.
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