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Abstract

Roles for Morphology in Computation †

Centre for Cognitive Science, Department of Informatics, University of Sussex, Brighton, UK
Presented at the IS4SI 2017 Summit DIGITALISATION FOR A SUSTAINABLE SOCIETY, Gothenburg, Sweden, 12–16 June 2017.
Proceedings 2017, 1(3), 182; https://doi.org/10.3390/IS4SI-2017-04096
Published: 9 June 2017
The morphological aspects of a system are the shape, geometry, placement and compliance properties of that system. On the rather permissive construal of computation as transformations of information, a correspondingly permissive notion of morphological computation can be defined: cases of information transformation performed by the morphological aspects of a system. This raises the question of what morphological computation might look like under different, less inclusive accounts of computation, such as the view that computation is essentially semantic. I investigate the possibilities for morphological computation under a particular version of the semantic view. First, I make a distinction between two kinds of role a given aspect might play in computations that a system performs: foreground role and background role. The foreground role of a computational system includes such things as rules, state, algorithm, program, bits, data, etc. But these can only function as foreground by virtue of other, background aspects of the same system: the aspects that enable the foreground to be brought forth, made stable/reidentifiable, and to have semantically coherent causal effect. I propose that this foreground/background distinction cross-cuts the morphological/non-morphological distinction. Specifically, morphological aspects of a system may play either role.
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MDPI and ACS Style

Chrisley, R. Roles for Morphology in Computation. Proceedings 2017, 1, 182. https://doi.org/10.3390/IS4SI-2017-04096

AMA Style

Chrisley R. Roles for Morphology in Computation. Proceedings. 2017; 1(3):182. https://doi.org/10.3390/IS4SI-2017-04096

Chicago/Turabian Style

Chrisley, Ron. 2017. "Roles for Morphology in Computation" Proceedings 1, no. 3: 182. https://doi.org/10.3390/IS4SI-2017-04096

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