A fiber optic gyroscope based on integrated optoelectronic devices
Yanshuang Zhao, Ruoxiang Tang, Xiaoming Zhang, Tao Chen
Abstract
Yanshuang Zhao, Ruoxiang Tang, Xiaoming Zhang, Tao Chen
Abstract
In recent years, the large volume, high cost, and high power consumption of fiber optic gyroscopes composed of various discrete devices have limited their application in various micro inertial navigation systems. This paper proposes a fiber optic gyroscope based on integrated optoelectronic devices. Compared with fiber optic gyroscopes based on discrete components, fiber optic gyroscopes based on integrated optoelectronic devices significantly reduce their volume despite limited accuracy degradation, and are expected to be applied in integrated fiber optic gyroscopes.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In recent years, the large volume, high cost, and high power consumption of fiber optic gyroscopes composed of various discrete devices have limited their application in various micro inertial navigation systems. This paper proposes a fiber optic gyroscope based on integrated optoelectronic devices. Compared with fiber optic gyroscopes based on discrete components, fiber optic gyroscopes based on integrated optoelectronic devices significantly reduce their volume despite limited accuracy degradation, and are expected to be applied in integrated fiber optic gyroscopes.
Key concepts: Gyroscope, Fibre optic gyroscope, Optical fiber, Materials science, Fiber optic splitter, Power consumption, Inertial navigation system, Optoelectronics