2009
DOI: 10.2139/ssrn.3074898
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Natural Variation and Neuromechanical Systems

Abstract: Natural variation plays an important but subtle and often ignored role in neuromechanical systems. This is especially important when designing for living or hybrid systems which involve a biological or self-assembling component. Accounting for natural variation can be accomplished by taking a population phenomics approach to modeling and analyzing such systems. I will advocate the position that noise in neuromechanical systems is partially represented by natural variation inherent in user physiology. Furthermo… Show more

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“…functionality, reliability, etc.). In another context, I have argued that the design principles for a "living" system must be fundamentally different than those for a mechanical or electrical system (Alicea, 2009). This is because living (e.g.…”
Section: Effect Of Variability On Desired Outcomes Since Cellular Rementioning
confidence: 99%
“…functionality, reliability, etc.). In another context, I have argued that the design principles for a "living" system must be fundamentally different than those for a mechanical or electrical system (Alicea, 2009). This is because living (e.g.…”
Section: Effect Of Variability On Desired Outcomes Since Cellular Rementioning
confidence: 99%