Systems Analysis Definition - ορισμός. Τι είναι το Systems Analysis Definition
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Τι (ποιος) είναι Systems Analysis Definition - ορισμός

Measurement Systems Analysis; Measurement systems analysis

Systems Analysis Definition      
<programming> (SAD) The analysis of the role of a proposed system and the identification of the requirements that it should meet. SAD is the starting point for system design. The term is most commonly used in the context of commercial programming, where software developers are often classed as either systems analysts or programmers. The systems analysts are responsible for identifying requirements (i.e. systems analysis) and producing a design. The programmers are then responsible for implementing it. (1996-03-07)
systems analysis         
PROBLEM-SOLVING TECHNIQUE THAT BREAKS DOWN A SYSTEM INTO ITS COMPONENT PIECES
Systems analysis & design; System Analysis and Design; Information systems analysis and design; Systems Analysis
<job> Study of the design, specification, feasibility, cost, and implementation of a computer system for business. What a systems analyst does. (1997-04-25)
World-systems theory         
  • The 13th century world-system
  • Map showing the British Empire in 1921
  • Dutch [[fluyt]]s of the seventeenth century
  • The 11th century world system
  • A model of a core-periphery system like that used in world-systems theory.
  • trading status]] in 2000, using the world system differentiation into core countries (blue), semi-periphery countries (yellow) and periphery countries (red). Based on the list in Dunn, Kawana, Brewer.
MULTIDISCIPLINARY, MACRO-SCALE APPROACH TO WORLD HISTORY AND SOCIAL CHANGE THAT STRESSES THAT THE WORLD-SYSTEM SHOULD BE THE PRIMARY UNIT OF SOCIAL ANALYSIS
World-system theory; World systems theory; World-systems analysis; World - systems analysis; World system theory; World Systems Theory; World System Theory; World historical systems; Sociology of globalization; World-systems approach; Modern World Systems; Modern world-system; World-systems perspective
World-systems theory (also known as world-systems analysis or the world-systems perspective)Immanuel Wallerstein, (2004), "World-systems Analysis." In World System History, ed.

Βικιπαίδεια

Measurement system analysis

A measurement systems analysis (MSA) is a thorough assessment of a measurement process, and typically includes a specially designed experiment that seeks to identify the components of variation in that measurement process. Just as processes that produce a product may vary, the process of obtaining measurements and data may also have variation and produce incorrect results. A measurement systems analysis evaluates the test method, measuring instruments, and the entire process of obtaining measurements to ensure the integrity of data used for analysis (usually quality analysis) and to understand the implications of measurement error for decisions made about a product or process. Proper measurement system analysis is critical for producing a consistent product in manufacturing and when left uncontrolled can result in a drift of key parameters and unusable final products. MSA is also an important element of Six Sigma methodology and of other quality management systems. MSA analyzes the collection of equipment, operations, procedures, software and personnel that affects the assignment of a number to a measurement characteristic.

A measurement systems analysis considers the following:

  • Selecting the correct measurement and approach
  • Assessing the measuring device
  • Assessing procedures and operators
  • Assessing any measurement interactions
  • Calculating the measurement uncertainty of individual measurement devices and/or measurement systems

Common tools and techniques of measurement systems analysis include: calibration studies, fixed effect ANOVA, components of variance, attribute gage study, gage R&R, ANOVA gage R&R, and destructive testing analysis. The tool selected is usually determined by characteristics of the measurement system itself. An introduction to MSA can be found in chapter 8 of Doug Montgomery's Quality Control book. These tools and techniques are also described in the books by Donald Wheeler and Kim Niles. Advanced procedures for designing MSA studies can be found in Burdick et al.

Equipment: measuring instrument, calibration, fixturing.

  • People: operators, training, education, skill, care.
  • Process: test method, specification.
  • Samples: materials, items to be tested (sometimes called "parts"), sampling plan, sample preparation.
  • Environment: temperature, humidity, conditioning, pre-conditioning.
  • Management: training programs, metrology system, support of people, support of quality management system.

These can be plotted in a "fishbone" Ishikawa diagram to help identify potential sources of measurement variation.