DocumentCode :
528679
Title :
A hybrid method to estimate velocity and acceleration using low-resolution optical incremental encoders
Author :
Baser, Ozgur ; Kilic, Ergin ; Konukseven, E. Ilhan ; Dolen, Melik
Author_Institution :
Mech. Eng. Dept., Middle East Tech. Univ., Ankara, Turkey
fYear :
2010
fDate :
7-10 Sept. 2010
Firstpage :
57
Lastpage :
60
Abstract :
Accurate velocity and acceleration estimates are required for model-reduced disturbance compensation in motion and force control applications. Such paradigms mostly rely on the position measurements of optical incremental encoders that are known to suffer from the quantization effects introduced by these devices (and their accompanying interfaces). Fixed-time (FT) and fixed-position (FP) methods are used to estimate velocity and acceleration from the quantized position signal. Using Field Programmable Gate Arrays (FPGAs) with high-frequency clock (timing) sources can reduce the effect of temporal quantization and improve the estimation performance of FP methods. However, it has low resolution for acceleration estimation especially at high frequencies and causes an impulsive change of acceleration estimation when the direction of motion dynamically changes. On the other hand, as one of the FT methods, adaptive windowing estimation method yields the best solution for the problematic cases of FP method. These two methods can be rolled into a single technique by applying parametric smooth transition in order to estimate velocity and acceleration for entire operating region. This paper presents a hybrid velocity and acceleration estimation method using low resolution incremental encoder, which can be implemented by a FPGA.
Keywords :
acceleration measurement; encoding; field programmable gate arrays; position measurement; velocity measurement; acceleration estimation; adaptive windowing estimation method; field programmable gate arrays; fixed-position method; fixed-time method; force control application; low-resolution optical incremental encoders; model-reduced disturbance compensation; motion control application; parametric smooth transition; position measurement; quantized position signal; temporal quantization; velocity estimation; Acceleration; Field programmable gate arrays; Haptic interfaces; Observers; Position measurement; Quantization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signals and Electronic Systems (ICSES), 2010 International Conference on
Conference_Location :
Gliwice
Print_ISBN :
978-1-4244-5307-8
Electronic_ISBN :
978-83-9047-4-2
Type :
conf
Filename :
5595255
Link To Document :
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