A Higher-Order Calculus of Computational Fields

Author:

Audrito Giorgio1,Viroli Mirko2,Damiani Ferruccio1ORCID,Pianini Danilo2,Beal Jacob3

Affiliation:

1. Dipartimento di Informatica, University of Turin, Italy

2. Dipartimeno di Informatica ? Scienza e Ingegneria, Università di Bologna, Italy

3. Raytheon BBN Technologies, Cambridge, MA, USA

Abstract

The complexity of large-scale distributed systems, particularly when deployed in physical space, calls for new mechanisms to address composability and reusability of collective adaptive behaviour. Computational fields have been proposed as an effective abstraction to fill the gap between the macro-level of such systems (specifying a system’s collective behaviour) and the micro-level (individual devices’ actions of computation and interaction to implement that collective specification), thereby providing a basis to better facilitate the engineering of collective APIs and complex systems at higher levels of abstraction. This article proposes a full formal foundation for field computations, in terms of a core (higher-order) calculus of computational fields containing a few key syntactic constructs, and equipped with typing, denotational and operational semantics. Critically, this allows formal establishment of a link between the micro- and macro-levels of collective adaptive systems by a result of computational adequacy and abstraction for the (aggregate) denotational semantics with respect to the (per-device) operational semantics.

Funder

European Union's Horizon 2020 research and innovation programme

Ateneo/CSP project RunVar

HyVar

ICT COST Action IC1402 ARVI

Publisher

Association for Computing Machinery (ACM)

Subject

Computational Mathematics,Logic,General Computer Science,Theoretical Computer Science

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1. Lecture Notes in Computer Science;Audrito Giorgio

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3. Lecture Notes in Computer Science;Audrito Giorgio

4. Optimal single-path information propagation in gradient-based algorithms

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