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The Closed-Loop Revolution

机译:闭环革命

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The year is 1970. An engineer with one of the world's most innovative protective relay developers glides an office chair back toward her desk. She sits in a massive, windowless room lit by high-bay fluorescents; the low hum of fans is the only soundtrack to her work. She checks the system specification again, squints toward the wall behind her, and finally gets up to reconfigure the final components. The perimeter of the room is lined with panels of analogue circuit components - thousands upon thousands in total - and she's spent the better part of a week reconfiguring them. With several other groups waiting to use the analogue simulator, she's been working as quickly as possible. Her motivation is no more than a series of satisfying clicks: the tripping of electromechanical distance protection relays, which will give her team the confidence to provide the technology to a customer in a novel network context. To see the relay operate in response to a true, albeit scaled-down, fault signal in the laboratory environment - that assurance is worth the unprecedented investment in the equipment that surrounds her.
机译:这一年是1970年。一位拥有世界上最具创新性的防护继电器开发人员之一的工程师将办公椅返回她的办公桌。她坐落在一个由高海湾荧光灯点亮的巨大而无窗口的房间;粉丝的低嗡嗡声是她工作的唯一原声。她再次检查系统规格,沿着她身后的墙壁眯着眼睛,最后开始重新配置最终组件。房间的周边内衬有模拟电路元件的面板 - 总共数千次 - 她花了一个更好的一周重新配置它们。使用其他几个等待使用模拟模拟器的组,她一直在尽快工作。她的动机不仅仅是一系列令人满意的点击:机电距离保护继电器的绊倒,这将使她的团队能够在新的网络上下文中为客户提供技术。为了响应实验室环境中,响应于True,虽然缩小的故障信号,但是在实验室环境中的故障​​信号是运行的 - 这是值得在围绕着她的设备的前所未有的投资。

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