Conductive fluid-based position sensor and method
First Claim
1. A position sensor comprising:
- a conductor disposed in a conductive fluid;
a plurality of electrodes fixedly disposed relative to a cavity containing the conductive fluid;
means for measuring a capacitance between each electrode and the conductor; and
processing means for determining a coordinate position of the conductor based on the capacitances between each electrode and the conductor that are measured.
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Accused Products
Abstract
An apparatus and method for determining a position and/or orientation of a conductor disposed in a conductive fluid. A plurality of electrodes disposed about the conductor and preferably being in contact with the conductive fluid are used to provide an electrical path between each electrode and the conductor. In one embodiment, resistances between each electrode and conductor are determined through use of a signal processing circuit. In another embodiment, capacitances between each electrode and the conductor are determined using a similar signal processing circuit. Once the resistances or capacitances are determined, the position of the conductor can be determined based on these values in combination with parameters relating to the configuration of the electrodes and conductor, as well as characteristics of the conductive fluid. In one implementation, the invention may be used in free space optical communication systems, whereby the position of the end portion of the fiber optic cable can be determined.
7 Citations
17 Claims
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1. A position sensor comprising:
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a conductor disposed in a conductive fluid;
a plurality of electrodes fixedly disposed relative to a cavity containing the conductive fluid;
means for measuring a capacitance between each electrode and the conductor; and
processing means for determining a coordinate position of the conductor based on the capacitances between each electrode and the conductor that are measured. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10)
a first multiplexer, receiving a reference voltage as an input that is multiplexed to respective leads connected to each of the electrodes in the leading set;
a second multiplexer, having a plurality of multiplexed inputs that are connected to respective leads for each of the electrodes in the trailing set;
an analog-to-digital converter, connected to the output of the second multiplexer; and
the processing means, programmed to solve a plurality of equations to determine the coordinate position of the conductor.
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9. The positioning sensor of claim 1, wherein said processing means comprises a digital signal processor.
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10. The position sensor of claim 1, wherein the conductor comprises one of a metallic sleeve or cladding disposed about an end portion of a fiber optic cable, thereby enabling a coordinate position of the end portion of the fiber optic cable to be determined.
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11. A method for determining a position and/or orientation of a conductor, comprising:
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disposing the conductor in a conductive fluid;
providing a plurality of electrodes that are fixedly displaces relative to a cavity in which the conductive fluid is held;
determining capacitances between each electrode and the conductor; and
calculating the position and/or orientation of the conductor based on the capacitances that are determined. - View Dependent Claims (12, 13, 14, 15, 16, 17)
measuring capacitances across respective combinations of leading and trailing electrodes; and
solving a plurality of simultaneous equations to determine the position and/or orientation of the conductor based on the capacitances that are measured.
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16. The method of claim 15, wherein the position and/or orientation of the conductor are determined by a circuit including:
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a first multiplexer, receiving a reference voltage as an input that is multiplexed to respective leads connected to each of the electrodes in the leading set;
a second multiplexer, having a plurality of multiplexed inputs that are connected to respective leads for each of the electrodes in the trailing set;
an analog-to-digital converter, connected to the output of the second multiplexer to measure the capacitances across the respective combinations of leading and trailing electrodes; and
a processing means, programmed to solve the plurality of simultaneous equations to determine the position and/or orientation of the conductor.
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17. The method of claim 11, wherein the conductor comprises one of a metallic sleeve or cladding disposed about an end portion of a fiber optic cable, further comprising determining a position of the end portion of the fiber optic cable based on the position of the conductor that is determined.
Specification