Journal of Engineering and Applied Sciences

Year: 2016
Volume: 11
Issue: 13
Page No. 2853 - 2857

Transformation of Signals in the Optic Systems of Differential-Type Fiber-Optic Transducers

Authors : T.I. Murashkina, E.A. Badeeva, O.V. Yurova, M.M. Savochkina and A.V. Motin

References

Badeeva, E.A., A.V. Gorish, A.N. Kotov, T.I. Murashkina and A.G. Pivkin, 2004. Theoretical Bases of Designing an Amplitude Pressure FOS with an Open Optical Channel. Moscow State Forest University, Moscow, Russia,.

Badeeva, E.A., L.N. Kolomiets, N.P. Krivulin, T.I. Murashkina and A.G. Pivkin, 2008. Development of Theory of Light Flux Distribution in the Optical System of Reflection-Type Fiber-Optic Transducers of Physical Quantities. Penza State University Information and Publishing Center, Penza, Russia,.

Badeeva, E.A., V.A. Meshcheryakov, T.I. Murashkina and A.G. Pivkin, 2003. Attenuator-type pressure FOS for aircraft. Datchiki Sistemi, 4: 11-14.

Kolominets, L.N., E.A. Badeeva and T.I. Murashkina, 2007. On implementing differential transformation of signals in reflection-type fiber-optic pressure transducers. Datchiki Sistemi, 3: 26-28.

Murashkina, T.I. and A.G. Pivkin, 2005. Attenuator-Type Fiber-Optic Pressure Sensors for Rocket Engineering. Penza State University Publishing House, Penza, Russia,.

Murashkina, T.I., V.D. Zuev and N.P. Krivulin, 2008. Displacement FOS with a spherical lens. Datchiki Sistemi, 5: 8-10.

Yurova, O.V., A.V. Arkhipov, I.T. Nazarova and T.I. Murashkina, 2011. Theoretical studies of a reflection-type angular displacement fiber-optic transducer. Ind. Automatic Control Syst. Controllers, 10: 48-51.

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