Make Design Decision

14,000,000 Leading Edge Experts on the ideXlab platform

Scan Science and Technology

Contact Leading Edge Experts & Companies

Scan Science and Technology

Contact Leading Edge Experts & Companies

The Experts below are selected from a list of 56184 Experts worldwide ranked by ideXlab platform

Jiayu Chen - One of the best experts on this subject based on the ideXlab platform.

  • a hybrid method for evaluation of maintainability towards a Design process using virtual reality
    Computers & Industrial Engineering, 2020
    Co-Authors: Dong Zhou, Qidi Zhou, Shengkui Zeng, Dequan Yu, Jiayu Chen
    Abstract:

    Abstract Modern society has a high demand for manufactured products in almost all fields. To achieve high availability and reduce costs, products require good maintainability, which is an intrinsic property that is decided mostly in the Design and manufacturing stages. Design evaluation plays an important role in improving the maintainability of products. At present, though Designers can verify maintainability by conducting virtual maintenance simulations on digital mockups (DMUs) to test Design and manufacturing effects, this approach requires substantial time and specialist knowledge. In this paper, a hybrid maintainability evaluation method based on virtual reality (VR) and fuzzy comprehensive evaluation (FCE) is proposed to solve the problem. First, an evaluation index system is established to launch the Design requirements. A VR-based method is proposed to help conduct the immersive maintenance simulation in a virtual environment. A maintenance simulation monitoring platform is developed to help Designers evaluate maintainability and Make Decisions. Finally, FCE is leveraged to give a comprehensive evaluation result for maintainability status. A case of comparative experiments was conducted to verify the effectiveness of the proposed method. The participants of two groups were encouraged to evaluate the maintainability of a fluid physical experiment rack for a space station based on a traditional method and the proposed method. After the physical verification and result analysis, the proposed method was demonstrated to have better abilities to help predict Design flaw and Make Design Decision.

Dong Zhou - One of the best experts on this subject based on the ideXlab platform.

  • a hybrid method for evaluation of maintainability towards a Design process using virtual reality
    Computers & Industrial Engineering, 2020
    Co-Authors: Dong Zhou, Qidi Zhou, Shengkui Zeng, Dequan Yu, Jiayu Chen
    Abstract:

    Abstract Modern society has a high demand for manufactured products in almost all fields. To achieve high availability and reduce costs, products require good maintainability, which is an intrinsic property that is decided mostly in the Design and manufacturing stages. Design evaluation plays an important role in improving the maintainability of products. At present, though Designers can verify maintainability by conducting virtual maintenance simulations on digital mockups (DMUs) to test Design and manufacturing effects, this approach requires substantial time and specialist knowledge. In this paper, a hybrid maintainability evaluation method based on virtual reality (VR) and fuzzy comprehensive evaluation (FCE) is proposed to solve the problem. First, an evaluation index system is established to launch the Design requirements. A VR-based method is proposed to help conduct the immersive maintenance simulation in a virtual environment. A maintenance simulation monitoring platform is developed to help Designers evaluate maintainability and Make Decisions. Finally, FCE is leveraged to give a comprehensive evaluation result for maintainability status. A case of comparative experiments was conducted to verify the effectiveness of the proposed method. The participants of two groups were encouraged to evaluate the maintainability of a fluid physical experiment rack for a space station based on a traditional method and the proposed method. After the physical verification and result analysis, the proposed method was demonstrated to have better abilities to help predict Design flaw and Make Design Decision.

Qidi Zhou - One of the best experts on this subject based on the ideXlab platform.

  • a hybrid method for evaluation of maintainability towards a Design process using virtual reality
    Computers & Industrial Engineering, 2020
    Co-Authors: Dong Zhou, Qidi Zhou, Shengkui Zeng, Dequan Yu, Jiayu Chen
    Abstract:

    Abstract Modern society has a high demand for manufactured products in almost all fields. To achieve high availability and reduce costs, products require good maintainability, which is an intrinsic property that is decided mostly in the Design and manufacturing stages. Design evaluation plays an important role in improving the maintainability of products. At present, though Designers can verify maintainability by conducting virtual maintenance simulations on digital mockups (DMUs) to test Design and manufacturing effects, this approach requires substantial time and specialist knowledge. In this paper, a hybrid maintainability evaluation method based on virtual reality (VR) and fuzzy comprehensive evaluation (FCE) is proposed to solve the problem. First, an evaluation index system is established to launch the Design requirements. A VR-based method is proposed to help conduct the immersive maintenance simulation in a virtual environment. A maintenance simulation monitoring platform is developed to help Designers evaluate maintainability and Make Decisions. Finally, FCE is leveraged to give a comprehensive evaluation result for maintainability status. A case of comparative experiments was conducted to verify the effectiveness of the proposed method. The participants of two groups were encouraged to evaluate the maintainability of a fluid physical experiment rack for a space station based on a traditional method and the proposed method. After the physical verification and result analysis, the proposed method was demonstrated to have better abilities to help predict Design flaw and Make Design Decision.

Shengkui Zeng - One of the best experts on this subject based on the ideXlab platform.

  • a hybrid method for evaluation of maintainability towards a Design process using virtual reality
    Computers & Industrial Engineering, 2020
    Co-Authors: Dong Zhou, Qidi Zhou, Shengkui Zeng, Dequan Yu, Jiayu Chen
    Abstract:

    Abstract Modern society has a high demand for manufactured products in almost all fields. To achieve high availability and reduce costs, products require good maintainability, which is an intrinsic property that is decided mostly in the Design and manufacturing stages. Design evaluation plays an important role in improving the maintainability of products. At present, though Designers can verify maintainability by conducting virtual maintenance simulations on digital mockups (DMUs) to test Design and manufacturing effects, this approach requires substantial time and specialist knowledge. In this paper, a hybrid maintainability evaluation method based on virtual reality (VR) and fuzzy comprehensive evaluation (FCE) is proposed to solve the problem. First, an evaluation index system is established to launch the Design requirements. A VR-based method is proposed to help conduct the immersive maintenance simulation in a virtual environment. A maintenance simulation monitoring platform is developed to help Designers evaluate maintainability and Make Decisions. Finally, FCE is leveraged to give a comprehensive evaluation result for maintainability status. A case of comparative experiments was conducted to verify the effectiveness of the proposed method. The participants of two groups were encouraged to evaluate the maintainability of a fluid physical experiment rack for a space station based on a traditional method and the proposed method. After the physical verification and result analysis, the proposed method was demonstrated to have better abilities to help predict Design flaw and Make Design Decision.

Dequan Yu - One of the best experts on this subject based on the ideXlab platform.

  • a hybrid method for evaluation of maintainability towards a Design process using virtual reality
    Computers & Industrial Engineering, 2020
    Co-Authors: Dong Zhou, Qidi Zhou, Shengkui Zeng, Dequan Yu, Jiayu Chen
    Abstract:

    Abstract Modern society has a high demand for manufactured products in almost all fields. To achieve high availability and reduce costs, products require good maintainability, which is an intrinsic property that is decided mostly in the Design and manufacturing stages. Design evaluation plays an important role in improving the maintainability of products. At present, though Designers can verify maintainability by conducting virtual maintenance simulations on digital mockups (DMUs) to test Design and manufacturing effects, this approach requires substantial time and specialist knowledge. In this paper, a hybrid maintainability evaluation method based on virtual reality (VR) and fuzzy comprehensive evaluation (FCE) is proposed to solve the problem. First, an evaluation index system is established to launch the Design requirements. A VR-based method is proposed to help conduct the immersive maintenance simulation in a virtual environment. A maintenance simulation monitoring platform is developed to help Designers evaluate maintainability and Make Decisions. Finally, FCE is leveraged to give a comprehensive evaluation result for maintainability status. A case of comparative experiments was conducted to verify the effectiveness of the proposed method. The participants of two groups were encouraged to evaluate the maintainability of a fluid physical experiment rack for a space station based on a traditional method and the proposed method. After the physical verification and result analysis, the proposed method was demonstrated to have better abilities to help predict Design flaw and Make Design Decision.