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Sunday, 28 May 2023

Utilization of Augmented Reality (AR) Technology in Architecture: Improving Visualization and Interactive Experience | English

 Utilization of Augmented Reality (AR) Technology in Architecture: Improving Visualization and Interactive Experience

 

 

 

 In the field of architecture, augmented reality (AR) technology has become a very useful tool in enhancing visualization and providing interactive experiences to architects, clients and other stakeholders. AR enables the placement of virtual objects into the real world, enabling architects to visualize their designs in their actual physical context. This article will discuss the use of AR technology in architecture and provide examples of its use.

 

1. Visualization of Design in Real Environment: By using AR technology, architects can incorporate three-dimensional (3D) digital models into real physical environments. This allows them to view and explore architectural designs live where they want them, such as the actual project site. This provides a better understanding of how the design will interact with its surroundings.

 

Example: An architect uses an AR app on a smartphone or tablet to visualize a 3D model of a planned building at an actual project site. They can see the building from different angles, understand how natural lighting will affect the atmosphere inside the building, and assess the interaction between the design and elements of the surrounding environment.

 

2. Annotate and Markup in Real Places: AR technology allows architects and clients to annotate and markup directly on real objects using AR tools. This facilitates communication and collaboration between all parties involved, as they can make comments, suggestions or changes directly to the design that is visible in front of them.

 

Example: An architect uses an AR toolkit to show a client in a real place how a room can be modified. They can add annotations and markup directly to the walls, floors, or furniture that surrounds them. Clients can see and understand proposed changes more clearly and provide real-time feedback.


3. Interactive Experience in Presentation: In architectural project presentation, AR technology allows architects to provide interactive experiences to audiences. They can combine virtual objects with physical presentations such as brochures or physical models, creating engaging and immersive presentations. Audiences can explore designs on a smaller scale or access additional information via AR tools.

 

Example: An architect uses an AR projector to project a 3D model of a building onto a table. They can win

 

explore those designs and allow audiences to interact with virtual objects using AR devices. They can zoom, rotate, or view building interior details with hand gestures or other input devices. This creates an interactive and memorable presentation experience.

 

4. Spatial Simulation and Navigation: AR technology allows users to experience and explore planned architectural spaces in greater depth. Using AR tools, users can walk around virtual models and gain a better understanding of the proportions, scale and layout of spaces. This helps in evaluating and improving the design before entering the construction phase.

 

through the planned building. They can scale virtual rooms to match ceiling height, check furniture layouts, and see how spaces interact with one another. This simulated experience helps architects ensure that their designs meet both functional and aesthetic needs. Example: An architect uses an AR headset to simulate a walking experience


5. Construction and Repair Monitoring: AR technology can also be used in construction and repair monitoring. Using AR tools, architects can view the original design plan on top of the existing physical structure, allowing them to check the suitability and quality of the implementation. This makes it easy to identify needed changes or repairs that need to be done quickly.

 

Example: An architect uses an AR tool to compare a design model with a building currently under construction. They can see exactly where structural elements and design features need to be placed. With this, they can provide clear instructions and guidance to the construction team to ensure that the final design is as planned.

 

6. Education and Interactive Learning: AR technology also has great potential in education and learning in architecture. Architecture students can use AR tools to learn design principles, observe and analyze landmarks, and participate in interactive design simulations. This provides a practical learning experience and enhances their understanding of architecture.

 

Example: A university uses AR tools as part of its architecture curriculum. Students can combine AR devices with their own 3D models. They can explore and modify designs interactively, test concepts, and observe the impact of design changes on a real scale. This allows students to develop skills and understanding

 

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