This book comprehensively and systematically introduces readers to the theories, structures, performance and applications of non-driven mechanical and non-driven micromechanical gyroscopes.
The book is divided into three parts, the first of which mainly addresses mathematic models, precision, performance and operating error in non-driven mechanical gyroscopes. The second part focuses on the operating theory, error, phase shift and performance experiments involving non-driven micromechanical gyroscopes in rotating flight carriers, while the third part shares insights into the application of non-driven micromechanical gyroscopes in control systems for rotating flight carriers.
The book offers a unique resource for all researchers and engineers who are interested in the use of inertial devices and automatic control systems for rotating flight carriers. It can also serve as a reference book for undergraduates, graduates and instructors in related fields at colleges and universities.Summarizes the latest studies on the micromechanical gyroscope with no driven structure
Discusses both theoretical and practical aspects of gyroscopes that can only be used on a spinning carrier
Describes the principle of the vehicle drive gyroscope in detail
Illustrates applications of the vehicle drive gyroscope
Introduces the production technology of the vehicle drive gyroscope
Fuxue Zhang
Application micromechanical gyroscope Gyroscope driven by vehicle Gyroscope driven structure Gyroscope manufacture Micromechanical gyroscope Micromechanical pendulum