Possibility for Control and Optical Filter Wheel Positioning Based on a Hall Sensor
Atanas Marinov Atanassov, Lubomir Bankov

TL;DR
This paper introduces a novel control method for an optical filter wheel using a single Hall-effect sensor and magnets, simplifying the positioning process compared to traditional multi-sensor systems.
Contribution
It proposes a new approach utilizing only one Hall-effect sensor and magnets to accurately control and position an optical filter disk, reducing system complexity.
Findings
Achieves precise filter positioning with a single sensor
Reduces hardware complexity compared to multi-sensor systems
Provides an algorithm and mathematical model for control
Abstract
This paper presents a controlling and positioning approach for an optical filter disk. In the known applications where Hall-effect sensors and magnets (radially positioned) are applied, the purpose of the latter is to help developing a binary code used mainly for filter identification. The number of sensors is equal to the maximum number of magnets that participate in forming the filter identity code. Therefore, three sensors and the corresponding number of magnets radially positioned for each position are required for the identification of seven filters. The precise position of the filter disk is reached by counting up the steps of a stepper motor. The presented approach applies only one Hall-effect sensor. The fore working front of one magnet, positioned along the disk periphery, is used to precisely mark each filter position. At a certain distance after the main magnet, a second one…
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Taxonomy
TopicsAstronomical Observations and Instrumentation · Sensor Technology and Measurement Systems · Inertial Sensor and Navigation
