增强Neher-McGrath公式来模拟当前的不确定性

C. Lan
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引用次数: 0

摘要

由于电网需求和负荷的不确定性以及其他因素,电流在电路中不断波动。电流的变化对电流的影响很大,但在很大程度上被忽略了。建议用户选择“下一个尺寸”的电线来解决这个问题。这一经验规则是否能确保电线和设备的安全安装是值得怀疑的。本研究从Neher和McGrath (NM)配方开始,并推导出操作温度的不确定性。利用对额定温度的可靠性约束,将不确定性表达式代回NM方程求解最大电流。结果是NM方程的随机版本,可用于推导过流保护的降额电容。现有的NEC表载电容量值的比较表明,根据电流变化的程度,“下一个尺寸”规则可能是不够的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhance Neher-McGrath formulation to model current uncertainty
Electric current fluctuates constantly in the circuit due to uncertainty of demand and load on the grid, as well as other factors. The current variation imposes significant effects on ampacity along the circuit, but is largely ignored. Users are advised to select “next size up” wire to address such an issue empirically. Whether this empirical rule ensures safe installation of wire and equipment is questionable. This study starts with the Neher and McGrath (NM) formulation and derives uncertainty of the operating temperature. Using the reliability constraint on the rated temperature, the uncertainty expression is substituted back to the NM equation to solve for the maximum current. The result is a stochastic version of the NM equation, which can be used to derive the derated ampacity for overcurrent protection. A comparison of the existing NEC tabulated ampacity values indicates that, depending on the degree of current variation, the “next size up” rule may not be sufficient.
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