VERFAHREN ZUM AUSGLEICH DER BEWEGUNG MOBILER MASSEN IN EINEM BILINEAREN ELEKTRODYNAMISCHEN MOTOR

The motion of the magnetized movable masses of a bilinear electrodynamic motor comprising two movable masses moving in opposite senses parallel to the axis (x-x) of the motor is balanced. At least one first magnetic sensor and at least one second magnetic sensor are provided which are able to delive...

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Bibliographic Details
Main Authors AIGOUY, GERALD, BUQUET, JONATHAN, TROLLIER, THIERRY
Format Patent
LanguageGerman
Published 15.09.2011
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Summary:The motion of the magnetized movable masses of a bilinear electrodynamic motor comprising two movable masses moving in opposite senses parallel to the axis (x-x) of the motor is balanced. At least one first magnetic sensor and at least one second magnetic sensor are provided which are able to deliver respectively a first electrical signal (s1(t)) and a second electrical signal (s2(t)) respectively representative of the motion of a first and of a second movable mass. An error signal ( s(t)) equal to the difference between the said first (s1(t)) and second (s2(t)) electrical signals is recorded. A harmonic analysis of the error signal performed. A sinusoidal excitation signal (e1(t)) at a given frequency f0 is applied to the first movable mass. N successive excitation signals (e2n(t)) are iteratively applied to the second movable mass, an excitation signal of rank n (0 n N−1) being equal to a Fourier series of order n of fundamental frequency f0, the term of order n of the said series being adjusted in amplitude and in phase so as to minimize the component at the frequency n·f0 of the error signal. The excitation signal (e2N−1(t)) of rank N−1 is taken as excitation signal for the second movable mass.
Bibliography:Application Number: AT20080761926T