DL / T 1013 — 2018 目 次 前言··································································································································································· II 1 范围······························································································································································ 1 2 规范性引用文件 ·········································································································································· 1 3 基本规定 ······················································································································································ 1 4 试验分类和试验项目 ·································································································································· 1 5 试验方法 ······················································································································································ 2 附录 A(规范性附录) 励磁调节器试验项目································································································ 5 附录 B(资料性附录) 励磁调节器仿真试验方法························································································ 7 I
正文摘录
DL / T1013 2018
分析两者之间的关系,确定调节器正常工作的同步电压最低值。)同步信号频率变化测试:触发控制角置于固定角度,将电压源输出电压设定在额定值,调整输e
入同步电压频率值,使其在0.9倍~1.65倍额定频率范围内变化,观测并记录同步电压信号和触发脉冲之间的移相。分析两者之间的关系,确定调节器正常工作的同步电压频率上下限。


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