1 00:00:00,000 --> 00:00:02,170 让我们模拟一下线路控制 2 00:00:02,170 --> 00:00:03,990 我们合上空气开关 3 00:00:03,990 --> 00:00:06,453 假设我们的线路处于分闸位置 4 00:00:06,453 --> 00:00:08,333 此时分闸指示灯亮 5 00:00:08,333 --> 00:00:09,913 当手动合闸时 6 00:00:09,913 --> 00:00:12,480 需将转换开关达到手动位置 7 00:00:12,480 --> 00:00:14,240 电到达按钮前端 8 00:00:14,240 --> 00:00:15,730 按下合闸按钮 9 00:00:15,730 --> 00:00:17,460 合闸电磁铁吸合 10 00:00:17,460 --> 00:00:18,790 合闸完成后 11 00:00:18,790 --> 00:00:19,780 松开按钮 12 00:00:19,786 --> 00:00:22,836 此时真空断路器常闭触点分开 13 00:00:22,836 --> 00:00:24,376 常开触点闭合 14 00:00:24,376 --> 00:00:26,196 导致分闸指示灯熄灭 15 00:00:26,200 --> 00:00:27,870 合闸指示灯亮起 16 00:00:27,870 --> 00:00:29,290 手动分闸时 17 00:00:29,290 --> 00:00:30,790 按下分闸按钮 18 00:00:30,790 --> 00:00:32,530 分闸电磁铁吸合 19 00:00:32,530 --> 00:00:33,666 分闸完成后 20 00:00:33,666 --> 00:00:35,846 断路器常开触点分开 21 00:00:35,846 --> 00:00:37,436 常闭触点闭合 22 00:00:37,436 --> 00:00:39,576 导致合闸指示灯熄灭 23 00:00:39,576 --> 00:00:41,026 分闸指示灯点亮 24 00:00:41,026 --> 00:00:43,336 当我们需要远程分合闸时 25 00:00:43,336 --> 00:00:46,296 只需将转换开关打到远程控制 26 00:00:46,296 --> 00:00:50,146 此时电到达远控箱或者国网平台的常开触点 27 00:00:50,146 --> 00:00:54,866 通过远程异地控制合闸触点和分闸触点实现分合闸 28 00:00:54,866 --> 00:00:56,706 既提升了操作灵活性 29 00:00:56,706 --> 00:00:59,400 更保证了我们操作人员的安全