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A low-wear onload tap changer diverter switch for frequent voltage control on distribution networks

机译:一种低损耗的有载分接开关切换开关,用于配电网络上的频繁电压控制

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摘要

This paper presents a fast mechanical diverter switch design suitable for new “arcless” hybrid onload tap-changing systems. In such systems, arcing at contact separation and contact closure is almost completely eliminated by the inclusion of alternate current paths incorporating semiconductor devices. This allows the use of compact, air-insulated mechanical contacts that do not need to withstand significant arc erosion or provide arc quenching. As a result, the moving mass and the drive system for the switch may be dramatically reduced in size, leading to low inertia of the moving parts and resulting in very rapid operation times. An integrated, high-torque, low-mass permanent-magnet actuator is presented that provides detent (unpowered) contact force coupled with a cantilever spring contact system sized for an 11-kV 2-MVA onload tap changer. The design delivers operation times of under 20 ms and is capable of sustaining more than $10^{6}$ operations. The complete design is experimentally verified under representative electrical conditions, and contact wear levels comparable to pure mechanical (zero current) operation are demonstrated.
机译:本文提出了一种适用于新型“无弧”混合有载分接开关系统的快速机械切换开关设计。在这样的系统中,通过包括结合了半导体器件的交流电流路径,几乎完全消除了触点分离和触点闭合时的电弧。这允许使用紧凑的,空气绝缘的机械触点,这些触点不需要承受明显的电弧腐蚀或熄灭电弧。结果,可显着减小开关的运动质量和驱动系统的尺寸,从而导致运动部件的惯性低并且导致非常快速的操作时间。提出了一种集成的,高转矩,低质量的永磁式执行器,该执行器提供制动(无动力)接触力以及尺寸适合于11 kV 2-MVA有载分接开关的悬臂弹簧接触系统。该设计的运行时间不到20毫秒,能够承受超过$ 10 ^ {6} $的运行成本。完整的设计在有代表性的电气条件下通过实验验证,并证明了与纯机械(零电流)操作相当的接触磨损水平。

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