An embedded controller for a 7-degree of freedom prosthetic arm
- PMID: 19162624
- DOI: 10.1109/IEMBS.2008.4649121
An embedded controller for a 7-degree of freedom prosthetic arm
Abstract
We present results from an embedded real-time hardware system capable of decoding surface myoelectric signals (sMES) to control a seven degree of freedom upper limb prosthesis. This is one of the first hardware implementations of sMES decoding algorithms and the most advanced controller to-date. We compare decoding results from the device to simulation results from a real-time PC-based operating system. Performance of both systems is shown to be similar, with decoding accuracy greater than 90% for the floating point software simulation and 80% for fixed point hardware and software implementations.
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