Electrical current measurement based on elastic waves propagation through dielectric materials

Instrument transformers are key elements within the modern transmission and distribution systems of electrical energy. Conventional inductive transformers for electrical currents measurement in high-voltage grids are expensive devices with a significant risk of explosion. This paper describes a new approach based on the propagation of elastic waves through dielectric media. The measurement system is composed by a current sensor and the associated electronic modules. The current sensor is formed by emitter, transmission structure, and receiver. The magnetostrictive material of the emitter generates elastic (mechanical) waves under the alternate magnetic field induced by the primary current to be measured. Thus the 50 Hz, or 60 Hz, electrical signals are converted into elastic waves that propagate through a dielectric coupling structure until they reach the receiver. In the receiver side the elastic waves are converted back into electrical signals.

[1]  K. Hotate,et al.  Formulas describing error induced by fiber linear-birefringence in fiber-optic current sensors , 2002, 2002 15th Optical Fiber Sensors Conference Technical Digest. OFS 2002(Cat. No.02EX533).

[2]  Wuu-Wen Lin,et al.  Fiber-optic current sensor , 2003 .

[3]  Slobodan J. Petricevic,et al.  Development of a portable fiber-optic current sensor for power systems monitoring , 2004, IEEE Transactions on Instrumentation and Measurement.

[4]  Alison B. Flatau,et al.  A Coupled Structural-Magnetic Strain and Stress Model for Magnetostrictive Transducers , 2000 .

[5]  A. Diez,et al.  A fiber-optic current sensor with frequency-codified output for high-voltage systems , 2002, IEEE Photonics Technology Letters.

[6]  K. Bohnert,et al.  Temperature and vibration insensitive fiber-optic current sensor , 2000, International Conference on Optical Fibre Sensors.