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- W3170400030 abstract "With the development of technology, the temperature range of environmental exposure is constantly expanding. Simultaneous miniaturization of optoelectronic devices leads to an increase in the density of internal heat emissions. Therefore, during thermal testing of manufactured devices, failures of product components are often detected due to their overheating. This also applies to Zeeman laser gyros.In this paper, the following scientific problem is set and solved. It is the development of such an algorithm for creating a laser gyro, which would ensure the detection of the product overheating at the early stages of design before the models or prototypes production. The algorithm is based on a digital simulation of the thermal process taking into account the design features of the device. It also improves the technical and economic performance of creating a laser gyro due to the fact that early detection of possible overheating of the gyro elements allows you to make the necessary changes to the device design drawings before making a mock-up or prototype. Making changes to the drawings and, accordingly, to the thermal model of the laser gyro is much cheaper than making them in the manufactured products. The design time of the device is reduced. Peculiarity of this work is also the proposal to create programmed digital twins of the thermal modes of the laser gyro. The main purpose of digital twins is to store information for setting up the devise during their manufacture and diagnostics during operation in various conditions of external influences." @default.
- W3170400030 created "2021-06-22" @default.
- W3170400030 creator A5063291530 @default.
- W3170400030 date "2021-04-27" @default.
- W3170400030 modified "2023-09-25" @default.
- W3170400030 title "Computer Thermal Modeling of Zeeman Laser Gyros in the Design Taking into Account the Creation of Digital Thermal Twins" @default.
- W3170400030 cites W2810027264 @default.
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- W3170400030 doi "https://doi.org/10.1109/sed51197.2021.9444500" @default.
- W3170400030 hasPublicationYear "2021" @default.
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