The growth in the capacity of electric power system creates a necessity demand on protection relaying systems. Optical current transducers (OCT) which are mainly single mode optical fiber subjected to Faraday rotation are used as replacement for EM transducers for their immunity to the EM interference. However, the sensitivity to currents depends on the Verdet constant which is low in optical fiber but the optical path length can be increased to compensate for it by winding the fiber around a current carrying element a large number of turns. In this work, we would like to study the effect of the inhomogeneity of the magnetic field induced by the current in the sensitivity of the optical fiber sensor
Fiber optic current sensors utilize the Faraday effect which causes the polarization of the light to...
The present paper deals with investigations concerning optical fibre current sensors. They are mainl...
AbstractA new method of measuring the Faraday rotation angle directly in optical current transducer ...
Abstract. The paper presents the experimental results of the investigations of optical fibre current...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Optical fibers may be applied in measurements of electrical current, particularly as so-called opti...
Some 175 years ago Michael Faraday discovered magnetic circular birefringence, now commonly known as...
The paper presents the experimental results of the investigations of optical fibre current sensors w...
Various applications of fiber optic current sensor are explored now. In this paper a new full-optica...
A magneto-optical current measurement system based on the Faraday effect is evaluated for measuring ...
A current sensor having an optmized optical fiber coil for sensing the magnetic field of a current o...
We find that sensors exploiting the Faraday effect in single-mode optical fibers are practical means...
A current sensor coil design for reducing or eliminating long undulations of magnetic sensitivity. S...
A magneto-optic sensor is developed using a Terbium Doped Glass (TDG) element as a Faraday rotation ...
Abstract. Fiber optic sensors dispose of some advantages in the field of electrical current and magn...
Fiber optic current sensors utilize the Faraday effect which causes the polarization of the light to...
The present paper deals with investigations concerning optical fibre current sensors. They are mainl...
AbstractA new method of measuring the Faraday rotation angle directly in optical current transducer ...
Abstract. The paper presents the experimental results of the investigations of optical fibre current...
Due to the character of the original source materials and the nature of batch digitization, quality ...
Optical fibers may be applied in measurements of electrical current, particularly as so-called opti...
Some 175 years ago Michael Faraday discovered magnetic circular birefringence, now commonly known as...
The paper presents the experimental results of the investigations of optical fibre current sensors w...
Various applications of fiber optic current sensor are explored now. In this paper a new full-optica...
A magneto-optical current measurement system based on the Faraday effect is evaluated for measuring ...
A current sensor having an optmized optical fiber coil for sensing the magnetic field of a current o...
We find that sensors exploiting the Faraday effect in single-mode optical fibers are practical means...
A current sensor coil design for reducing or eliminating long undulations of magnetic sensitivity. S...
A magneto-optic sensor is developed using a Terbium Doped Glass (TDG) element as a Faraday rotation ...
Abstract. Fiber optic sensors dispose of some advantages in the field of electrical current and magn...
Fiber optic current sensors utilize the Faraday effect which causes the polarization of the light to...
The present paper deals with investigations concerning optical fibre current sensors. They are mainl...
AbstractA new method of measuring the Faraday rotation angle directly in optical current transducer ...