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A design perspective on modularity
Proceedings of the tenth international conference on Aspect-oriented software development, 2011Modularity is essential to software development. Without it, large software systems simply could not be realized. Designers typically strive to achieve a high degree of modularity by separating different concerns over different modules, a process called modularization. Modularity, however, is but one of the goals that the designer has.
André van der Hoek, Nicolás López
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Software: Practice and Experience, 1988
AbstractThis paper presents a modular design approach for the implementation of process‐oriented or event‐oriented discrete systems simulation software. Requirements for such a simulation facility are discussed, to include list processing capabilities, data structuring capabilities, dynamic allocation of data storage, statistics collection and number ...
Ravi Sharma, Lawrence L. Rose
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AbstractThis paper presents a modular design approach for the implementation of process‐oriented or event‐oriented discrete systems simulation software. Requirements for such a simulation facility are discussed, to include list processing capabilities, data structuring capabilities, dynamic allocation of data storage, statistics collection and number ...
Ravi Sharma, Lawrence L. Rose
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Modularizing and layering metamodels with the modular EMF designer
Proceedings of the 21st ACM/IEEE International Conference on Model Driven Engineering Languages and Systems: Companion Proceedings, 2018Metamodels are used in model-driven engineering and model-driven software development to define domain specific languages. Over time, they tend to evolve and grow in complexity to encompass new features. If a modular approach is not taken into account and metamodels are extended intrusively, they can become difficult to maintain and to extend. With the
Kechaou, Amine, Strittmatter, Misha
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2009
This chapter presents a three-phase methodology, which is proposed for the development of complex products using the modularity concept. The proposed methodology matches the criteria set by the design for functionality, assembly, and manufacture. A detailed discussion of needs analysis, quality function deployment, product requirement analysis, product/
Ali K. Kamrani, Emad Abouel Nasr
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This chapter presents a three-phase methodology, which is proposed for the development of complex products using the modularity concept. The proposed methodology matches the criteria set by the design for functionality, assembly, and manufacture. A detailed discussion of needs analysis, quality function deployment, product requirement analysis, product/
Ali K. Kamrani, Emad Abouel Nasr
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Design of Modular Rendering Pipeline
7th IEEE International Conference on Computer and Information Technology (CIT 2007), 2007From the user's point-of-view, current graphics systems have a limited modularity of rendering pipelines. Users cannot assemble a custom rendering algorithm. In this paper, we propose a modular component based rendering pipeline with concepts of visual programming. We briefly define a general module-based architecture for visual programming in graphics
Tomas Ágoston +3 more
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Design of modular workhandling systems
Microprocessors and Microsystems, 1984Abstract The mechanical structure and control system architecture for pneumomechanical single-axis modular units are described. The units were designed as subsystems to allow the construction of robots with kinematics suitable for a wide range of workhandling tasks.
Richard H. Weston +3 more
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Localized verification of modular designs
Formal Methods in System Design, 1995This paper describes a verification technique that 1) enables a designer to verify properties of a partial design where some parts have not yet been completed, 2) yields a number of verification conditions growing linearly with the size of the design description.
Jørgen Staunstrup, Niels Mellergaard
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2018
Design for modularity refers to decisions taken at the design stage of the ship lifecycle, addressing how we can decompose and encapsulate ship system elements to both improve design and manufacturing process efficiency and ship operational performance.
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Design for modularity refers to decisions taken at the design stage of the ship lifecycle, addressing how we can decompose and encapsulate ship system elements to both improve design and manufacturing process efficiency and ship operational performance.
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Design of a modular snake robot
2007 IEEE/RSJ International Conference on Intelligent Robots and Systems, 2007Many factors such as size, power, and weight constrain the design of modular snake robots. Meeting these constraints requires implementing a complex mechanical and electrical architecture. Here we present our solution, which involves the construction of sixteen aluminum modules and creation of the Super Servo, a modified hobby servo.
Cornell Wright III +8 more
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1996
This chapter presents a Design for Modularity technique — Modular Function Deployment. It is a systematic procedure consisting of five major steps. It starts with Quality Function Deployment (QFD) analysis to establish customer requirements and technical solutions with a special emphasis on modularity.
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This chapter presents a Design for Modularity technique — Modular Function Deployment. It is a systematic procedure consisting of five major steps. It starts with Quality Function Deployment (QFD) analysis to establish customer requirements and technical solutions with a special emphasis on modularity.
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