- Path:
-
ColorChart
Periodical
- Title:
- Paladyn
- Publication:
-
Warsaw: De Gruyter
- Note:
- Gesehen am 03.01.22
- Open Access
- Namensnennung 4.0 International
- Archivierung/Langzeitarchivierung gewährleistet
- Scope:
- Online-Ressource
- ISSN:
- 2081-4836
- ZDB-ID:
-
2550006-5
- VÖBB-Katalog:
- 35326634
- Keywords:
- Zeitschrift
- Classification:
- Informatik
- Collection:
- Informatik
- Copyright:
- Rights reserved
- Accessibility:
- Eingeschränkter Zugang mit Nutzungsbeschränkungen
- Title:
- Paladyn
- Publication:
-
Warsaw: De Gruyter
- Note:
- Gesehen am 03.01.22
- Open Access
- Namensnennung 4.0 International
- Archivierung/Langzeitarchivierung gewährleistet
- Scope:
- Online-Ressource
- ISSN:
- 2081-4836
- ZDB-ID:
-
2550006-5
- VÖBB-Katalog:
- 35326634
- Keywords:
- Zeitschrift
- Classification:
- Informatik
- Collection:
- Informatik
- Copyright:
- Rights reserved
- Accessibility:
- Eingeschränkter Zugang mit Nutzungsbeschränkungen
Article
- Title:
- Applications of virtual reality technology on a 3D model based on a fuzzy mathematical model in an urban garden art and design setting
- Publication:
-
Warsaw: De Gruyter, 2025
- Language:
- English
- Information:
- Abstract: In the framework of an urban garden art and design environment, this research examines the integration of virtual reality (VR) technology with a 3D model built using a fuzzy mathematical model. The goal is to provide a cutting-edge, immersive experience that enables people to engage with and explore the subtleties of a distinctive urban garden setting by fusing creative components with outdoor areas. Our proposed, advanced genetic algorithm-based fuzzy logic mathematical model effectively addressed the challenges in urban gardens by providing innovative design solutions that optimized space, efficiently managed resources, and fostered community engagement, ensuring produce safety, health, and the vitality of the garden. Raw data were collected, and then the data were involved in the pre-processed used min-max normalization. Next feature extracts the data using principal component analysis. The research findings should be presented, together with information on how well VR technology and a fuzzy mathematical model worked to produce the intended aesthetic results. It also describes how the research can be used for VR, urban garden design, and art. The findings demonstrate that VR technology gives designers actual impacts of information processing via complete presentation, intelligent drawing, and timely information, which significantly boosts design productivity and successfully encourages design quality and fitness rate accuracy. Additionally, two benchmark datasets were used for comparison, and our proposed method achieved an accuracy of 98.8%. The research expands the possibilities for artistic expression and strengthens the connection between people and urban green areas.
- Scope:
- Online-Ressource
- Note:
- Open Access
- Archivierung/Langzeitarchivierung gewährleistet
- Keywords:
- design environment ; 3D model ; urban garden ; environmental art design ; advanced genetic algorithm-fuzzy mathematical model
- Classification:
- Informatik
- Kunst
- Collection:
- Informatik
- Kunst
- Copyright:
- CC BY
- Accessibility:
- Free Access
- Title:
- Applications of virtual reality technology on a 3D model based on a fuzzy mathematical model in an urban garden art and design setting
- Publication:
-
Warsaw: De Gruyter, 2025
- Language:
- English
- Information:
- Abstract: In the framework of an urban garden art and design environment, this research examines the integration of virtual reality (VR) technology with a 3D model built using a fuzzy mathematical model. The goal is to provide a cutting-edge, immersive experience that enables people to engage with and explore the subtleties of a distinctive urban garden setting by fusing creative components with outdoor areas. Our proposed, advanced genetic algorithm-based fuzzy logic mathematical model effectively addressed the challenges in urban gardens by providing innovative design solutions that optimized space, efficiently managed resources, and fostered community engagement, ensuring produce safety, health, and the vitality of the garden. Raw data were collected, and then the data were involved in the pre-processed used min-max normalization. Next feature extracts the data using principal component analysis. The research findings should be presented, together with information on how well VR technology and a fuzzy mathematical model worked to produce the intended aesthetic results. It also describes how the research can be used for VR, urban garden design, and art. The findings demonstrate that VR technology gives designers actual impacts of information processing via complete presentation, intelligent drawing, and timely information, which significantly boosts design productivity and successfully encourages design quality and fitness rate accuracy. Additionally, two benchmark datasets were used for comparison, and our proposed method achieved an accuracy of 98.8%. The research expands the possibilities for artistic expression and strengthens the connection between people and urban green areas.
- Scope:
- Online-Ressource
- Note:
- Open Access
- Archivierung/Langzeitarchivierung gewährleistet
- Keywords:
- design environment ; 3D model ; urban garden ; environmental art design ; advanced genetic algorithm-fuzzy mathematical model
- Classification:
- Informatik
- Kunst
- Collection:
- Informatik
- Kunst
- Copyright:
- CC BY
- Accessibility:
- Free Access