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Hybrid system models - those devised from two or more disparate sub-system models - provide a number of benefits in terms of conceptualization, development, and assessment of dynamical systems. The decomposition approach helps to formulate complex interactions that are otherwise difficult or impractical to express. However, hybrid model development and

Hybrid system models - those devised from two or more disparate sub-system models - provide a number of benefits in terms of conceptualization, development, and assessment of dynamical systems. The decomposition approach helps to formulate complex interactions that are otherwise difficult or impractical to express. However, hybrid model development and usage can introduce complexity that emerges from the composition itself.

To improve assurance of model correctness, sub-systems using disparate modeling formalisms must be integrated above and beyond just the data and control level; their composition must have model specification and simulation execution aspects as well. Poly-formalism composition is one approach to composing models in this manner.

This dissertation describes a poly-formalism composition between a Discrete EVent System specification (DEVS) model and a Cellular Automata (CA) model types. These model specifications have been chosen for their broad applicability in important and emerging domains. An agent-environment domain exemplifies the composition approach. The inherent spatial relations within a CA make it well-suited for environmental representations. Similarly, the component-based nature of agents fits well within the hierarchical component structure of DEVS.

This composition employs the use of a third model, called an interaction model, that includes methods for integrating the two model types at a formalism level, at a systems architecture level, and at a model execution level. A prototype framework using DEVS for the agent model and GRASS for the environment has been developed and is described. Furthermore, this dissertation explains how the concepts of this composition approach are being applied to a real-world research project.

This dissertation expands the tool set modelers in computer science and other disciplines have in order to build hybrid system models, and provides an interaction model for an on-going research project. The concepts and models presented in this dissertation demonstrate the feasibility of composition between discrete-event agents and discrete-time cellular automata. Furthermore, it provides concepts and models that may be applied directly, or used by a modeler to devise compositions for other research efforts.

ContributorsMayer, Gary R. (Author)
Created2009
Description

PowerPoint presentation to the Santa Fe Institute, October 2004.

ContributorsBarton, C. Michael (Author)
Created2004
Description
Arizona and the Phoenix metropolitan area are experiencing a housing crisis, both in terms of affordability and supply. While the number of affordable and available units has been shrinking, a separate trend has emerged that is also adding pressure to the housing market, particularly for renters—a demand for transit-oriented, walkable,

Arizona and the Phoenix metropolitan area are experiencing a housing crisis, both in terms of affordability and supply. While the number of affordable and available units has been shrinking, a separate trend has emerged that is also adding pressure to the housing market, particularly for renters—a demand for transit-oriented, walkable, sustainable communities. As governments invest in projects and infrastructure falsely branded as sustainable, environmental gentrification often occurs resulting in displacement of current residents. Without new, moderately priced housing being built, displaced residents remain housing cost burdened. Workforce housing, priced to serve lower-middle to middle-income residents, offers a release from the pressure on the housing market, but innovative models for workforce housing development are necessary to navigate the regulatory and financial barriers in place. During a Solutions Round Table event facilitated by my client, a variety of potential tools for mitigating the housing crisis and removing barriers to workforce housing development were discussed. Based on conversations documented during the event, a robust list of workforce housing development tools was created. With the help of my client, the list was winnowed down to six tools for focused research—off-site construction, cohousing, land banks, missing middle infill models, community land trusts combined with limited equity cooperatives, and public-private partnerships. This project describes these tools and outlines best practices for developing and implementing them in the Valley. The best practices are organized to serve as guidance for the private sector and public sector separately, and for embedding health and social equity. Each tool is assessed using a simplified version of Gibson’s (2006) sustainability criteria, combined into four dimensions—environment, social, economic, and holistic. The findings from the assessment are embedded as guidance throughout the final product, a white paper, which will be delivered to Urban Land Institute (ULI) Arizona District Council Task Force for Health, Equity, and Housing Affordability, my client for this project.
ContributorsVan Horn, Elizabeth (Writer of accompanying material)
Created2020-05-26