Planspiel-Literaturdatenbank des ZMS

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  • 2018

  • Kriz, Willy C.; Harviainen, J. Tuomas; Clapper, Timothy C. (2018): Game Science:Foundations and Perspectives. In: Simulation & Gaming (Vol. 49 (3)), S. 199-206. DOI: 10.1177/1046878118781631

    DOI: https://doi.org/10.1177/1046878118781631 

    Abstract: Background. Game studies offer cross-disciplinary perspectives, but the body of knowledge is not yet in the form of a cohesive game science paradigm. Klabbers (2018a) argues that a comprehensive and coherent view on game science is needed that connects three levels of inquiry: the philosophy of science level, the science level, and the application level. Aim. This single-theme symposium issue On the Architecture of Game Science is especially devoted to the reflection and discussion on the foundations and principles of gaming and simulation. Method. Raising a debate among scholars and professionals, addressing the questions and frame-of-reference presented in the introductory article of Klabbers (2018a) and completed by his rebuttal. Results. The contributions range from the linkages between game science and complex social systems design through gaming simulation, to gamification science, and game studies, focusing on the ludosphere and the growing field of digital games. Conclusion. The articles present an overview of the current state of the art, craft, and science of gaming simulation, gamification and game studies. They present a stimulating and challenging debate, and a good basis for advancing the principles and foundations of game science.

  • Raghothama, Jayanth; Meijer, Sebastiaan (2018): Rigor in Gaming for Design:Conditions for Transfer between Game an Reality. In: Simulation & Gaming (Vol. 49 (3)), S. 246-262. DOI: 10.1177/1046878118770220

    DOI: https://doi.org/10.1177/1046878118770220 

    Abstract: Background. The increasing cognizance of complexity in systems has brought into focus important questions about the methods and tools we use to address them. Games for design, where games and computer simulations are used together to create concrete and tangible designs in a pluralistic way, with multiple stakeholders within the game is a new area for simulation gaming. Aim. In this article about gaming for design, embedded in the design science approach towards game science, we raise important philosophical questions about this new area, as well as attempt to address practical questions at the application level. We attempt to bridge the analytical science and design science approaches to games, and analyze them through meta-constructs of games such as fidelity, abstraction and resolution. Results. Results from two applications, through analysis of game play and debriefing of game sessions from two applications, COMPLEX and ProtoWorld are gathered and analyzed to understand the respresentational requirements for simulations and games. Conclusion. Results point to the need for rigor in gaming, particularly when modeling reference systems and rigor in assessing effects, both during game play and while debriefing. Results also point to expanded definitions of meta-constructs of games, as well as to their linked nature.

  • Wardaszko, Marcin (2018): Interdisciplinary Approach to Complexity in Simulation Game Design and Implementation. In: Simulation & Gaming (Vol. 49 (3)), S. 263-278. DOI: 10.1177/1046878118777809

    DOI: https://doi.org/10.1177/1046878118777809 

    Abstract: Background. This article offers another look at the complexity in simulation game design and implementation. Although, the topic is not new or undiscovered the growing volatility of socio-economic environments and changes to the way we design simulation games nowadays call for better research and design methods. Aim. The aim of this article is to look into the current state of understanding complexity in simulation gaming and put it in the context of learning with and through complexity. Methodology. The nature and understanding of complexity are simultaneously field-specific and interdisciplinary. Analyzing understanding and role of complexity in different fields associated with simulation game design and implementation. Thoughtful theoretical analysis has been applied in order to deconstruct the complexity theory and reconstruct it further as higher-order models. Results and recommendations. This article offers an interdisciplinary look at the role and place of complexity from two perspectives. The first perspective is knowledge building and dissemination about complexity in simulation gaming. Second, perspective is the role the complexity plays in building and implementation of the simulation gaming as a design process.

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