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Smart Sensors, Dumb Engineers - How To Avoid Crossed Signals in Instrumentation

机译:智能传感器,愚蠢的工程师 - 如何避免在仪器中交叉信号

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How much time do you spend going back and correcting or re-acquiring your data because either a sensor was oriented incorrectly, switched with another sensor channel or the sensor simply wasn't working when you acquired the data? How many times has the instrumentation phase of your modal test (including the time required to get all sensors working properly and entered accurately into the data acquisition system) required more time and effort than actually conducting the modal test itself? With all the advances in modal test instrumentation, why are sensors and cables very often the weakest link in the modal test process? Have so-called smart sensors really improved modal testing? This paper addresses these questions and explores the authors. experience with various types of sensors, methods of instrumenting test articles, advances over the years, successes and failures, and some best practices in the use of modal test instrumentation, especially for "large" (100-500) channel count tests.
机译:您花费了多少时间返回和纠正或重新获取数据,因为传感器不正确定向,用另一个传感器通道切换或在您获取数据时,传感器根本不起作用?您的模态测试的仪表阶段有多少次(包括让所有传感器正确工作所需的时间并准确进入数据采集系统),而不是实际进行模态测试本身的时间和精力?随着模态测试仪器的所有进步,为什么传感器和电缆通常是模态测试过程中最薄弱的链接?有所谓的智能传感器真的改善了模态测试吗?本文讨论了这些问题并探讨了作者。各种类型的传感器的经验,仪器测试文章的方法,多年来推进,取得的成功和失败,以及使用模态测试仪器的一些最佳实践,特别是对于“大”(100-500)通道计数测试。

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