scholarly journals Using technological frames as an analytic tool in value sensitive design

Author(s):  
Christiane Grünloh
2019 ◽  
Vol 1 (1) ◽  
pp. 1-15
Author(s):  
RYAN EVELY GILDERSLEEVE ◽  
KATIE KLEINHESSELINK

The Anthropocene has emerged in philosophy and social science as a geologic condition with radical consequence for humankind, and thus, for the social institutions that support it, such as higher education. This essay introduces the special issue by outlining some of the possibilities made available for social/philosophical research about higher education when the Anthropocene is taken seriously as an analytic tool. We provide a patchwork of discussions that attempt to sketch out different ways to consider the Anthropocene as both context and concept for the study of higher education. We conclude the essay with brief introductory remarks about the articles collected for this special issue dedicated to “The Anthropocene and Higher Education.”


2010 ◽  
Author(s):  
Ton Monasso ◽  
John Groenewegen

AI and Ethics ◽  
2021 ◽  
Author(s):  
Steven Umbrello ◽  
Ibo van de Poel

AbstractValue sensitive design (VSD) is an established method for integrating values into technical design. It has been applied to different technologies and, more recently, to artificial intelligence (AI). We argue that AI poses a number of challenges specific to VSD that require a somewhat modified VSD approach. Machine learning (ML), in particular, poses two challenges. First, humans may not understand how an AI system learns certain things. This requires paying attention to values such as transparency, explicability, and accountability. Second, ML may lead to AI systems adapting in ways that ‘disembody’ the values embedded in them. To address this, we propose a threefold modified VSD approach: (1) integrating a known set of VSD principles (AI4SG) as design norms from which more specific design requirements can be derived; (2) distinguishing between values that are promoted and respected by the design to ensure outcomes that not only do no harm but also contribute to good, and (3) extending the VSD process to encompass the whole life cycle of an AI technology to monitor unintended value consequences and redesign as needed. We illustrate our VSD for AI approach with an example use case of a SARS-CoV-2 contact tracing app.


2019 ◽  
Vol 3 (CSCW) ◽  
pp. 1-23 ◽  
Author(s):  
Charles Kiene ◽  
Jialun Aaron Jiang ◽  
Benjamin Mako Hill

2020 ◽  
Vol 26 (6) ◽  
pp. 2927-2955
Author(s):  
Mar Palmeros Parada ◽  
Lotte Asveld ◽  
Patricia Osseweijer ◽  
John Alexander Posada

AbstractBiobased production has been promoted as a sustainable alternative to fossil resources. However, controversies over its impact on sustainability highlight societal concerns, value tensions and uncertainties that have not been taken into account during its development. In this work, the consideration of stakeholders’ values in a biorefinery design project is investigated. Value sensitive design (VSD) is a promising approach to the design of technologies with consideration of stakeholders’ values, however, it is not directly applicable for complex systems like biorefineries. Therefore, some elements of VSD, such as the identification of relevant values and their connection to a technology’s features, are brought into biorefinery design practice. Midstream modulation (MM), an approach to promoting the consideration of societal aspects during research and development activities, is applied to promote reflection and value considerations during the design decision making. As result, it is shown that MM interventions during the design process led to new design alternatives in support of stakeholders' values, and allowed to recognize and respond to emerging value tensions within the scope of the project. In this way, the present work shows a novel approach for the technical investigation of VSD, especially for biorefineries. Also, based on this work it is argued that not only reflection, but also flexibility and openness are important for the application of VSD in the context of biorefinery design.


1972 ◽  
Vol 74 (5) ◽  
pp. 1319-1320
Author(s):  
Arthur E. Hippler
Keyword(s):  

2011 ◽  
Vol 14 (3) ◽  
pp. A2
Author(s):  
T. Mark ◽  
A. Pepitone ◽  
M. Hatzmann ◽  
A. Navathe ◽  
K. Goodrich ◽  
...  

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