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A study of angular rate sensing by corona discharge ion wind

机译:电晕放电离子风的角速度检测研究

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We report an application of ion wind in angular rate sensing. A new design of a jet flow gyroscope using ion wind corona discharge is developed by conducting a numerical simulation and then an experimental analysis with regard to the advantages of a corona-discharge-based jet flow. Ion wind is generated by applying a high-voltage between a pin, as the discharge electrode, and a ring, as the reference electrode. The current-voltage characteristics of the discharge process by experimental works is set up as the boundary condition to describe the ion wind flow in the numerical simulation. A jet flow of ion wind is observed through an experiment and a simulation. When the gyroscope is subjected to an angular rate, the induced Coriolis force deflects the ion wind. This deflection is detected using four hotwires installed downstream of the working chamber behind the reference electrode. The experimental result show that the angular rate can be detected with a sensitivity of 4.7 mu V/degrees/s. Because ion wind can be generated with minimum power and does not require any vibrating components, the device is robust, consumes low power, and is cost-effective. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们在角速度传感中报告了离子风的应用。通过进行数值模拟开发了使用离子风电晕放电的射流陀螺仪的新设计,然后开发了基于电晕放电的射流的优点进行了实验分析。通过将销之间的高压,作为放电电极和环作为参考电极施加高电压来产生离子风。通过实验工程将放电过程的电流 - 电压特性设置为在数值模拟中描述离子风流量的边界条件。通过实验和模拟观察离子风的喷射流动。当陀螺仪进行角度率时,诱导的科里奥利力偏转离子风。使用安装在参考电极后面的工作室下游的四个热带检测该偏转。实验结果表明,可以以4.7μmV/秒的灵敏度检测角速率。由于离子风可以以最小功率产生并且不需要任何振动组件,因此设备具有稳健,消耗低功耗,并且具有成本效益。 (c)2018年elestvier b.v.保留所有权利。

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