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SMART RADIATION THERMOMETRY SYSTEM FOR REAL-TIME GAS TURBINE CONTROL AND PREDICTION

机译:实时燃气轮机控制和预测的智能辐射测温系统

摘要

PROBLEM TO BE SOLVED: To perform real-time gas turbine control and prediction in a smart radiation thermometry system.;SOLUTION: A smart radiation thermometry system including a turbine component 18 is provided. The smart radiation thermometry system includes an optical imaging sub-system configured to receive a continuous broad wavelength band radiation signal emitted by the turbine component 18. The thermometry system also includes a wavelength splitting sub-system which is in optical communication with the optical transmission sub-system, receives the continuous broad wavelength band radiation signal, and splits the radiation signal into multiple sub-wavelength band signals. The thermometry system further includes at least one detector array 42 which is in optical communication with the wavelength-splitting sub-system, receives the multiple sub-wavelength band signals, and outputs respective analog voltage signals for the respective signals.;COPYRIGHT: (C)2013,JPO&INPIT
机译:解决的问题:在智能辐射测温系统中执行燃气轮机的实时控制和预测。解决方案:提供了一种包括涡轮组件18的智能辐射测温系统。智能辐射测温系统包括光学成像子系统,该光学成像子系统被配置为接收涡轮部件18发出的连续的宽波段辐射信号。测温系统还包括与光传输子系统进行光通信的波长分离子系统。 -系统,接收连续的宽波段辐射信号,并将辐射信号分成多个子波段信号。测温系统还包括至少一个检测器阵列42,该检测器阵列42与波长分离子系统光学通信,接收多个子波长带信号,并为各个信号输出各自的模拟电压信号。 )2013年,日本特许厅&INPIT

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