Decision Analysis Technique For Program Evaluation Goal Programming


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Decision Analysis Technique for Program Evaluation (Goal Programming).


Decision Analysis Technique for Program Evaluation (Goal Programming).

Author: Thomas J. McGeehan

language: en

Publisher:

Release Date: 1977


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A mathematical decision model for information service planning was derived from administrative goals. Program plans are assessed in the context of performance goals for six areas: available staff, available budget, program effectiveness, functional requirements, basic service requirements, investment programs to insure future progress. The technique is an extension of linear programming that calculates optimal solutions to decision problems in the areas of resource allocation, policy analysis and program evaluation according to a set of preemptive priorities established by management. The report includes a program in FORTRAN 4 for computing solutions. (Author).

Scientific and Technical Aerospace Reports


Scientific and Technical Aerospace Reports

Author:

language: en

Publisher:

Release Date: 1986


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Project Management for the Oil and Gas Industry


Project Management for the Oil and Gas Industry

Author: Adedeji B. Badiru

language: en

Publisher: CRC Press

Release Date: 2013-01-23


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Project management for oil and gas projects comes with a unique set of challenges that include the management of science, technology, and engineering aspects. Underlining the specific issues involved in projects in this field, Project Management for the Oil and Gas Industry: A World System Approach presents step-by-step application of project management techniques. Using the Project Management Body of Knowledge (PMBOK®) framework from the Project Management Institute (PMI) as the platform, the book provides an integrated approach that covers the concepts, tools, and techniques for managing oil and gas projects. The authors discuss specialized tools such as plan, do, check, act (PDCA); define, measure, analyze, improve, control (DMAIC); suppliers, inputs, process, outputs, customers (SIPOC); design, evaluate, justify, integrate (DEJI); quality function deployment (QFD); affinity diagrams; flowcharts; Pareto charts; and histograms. They also discuss the major activities in oil and gas risk assessment, such as feasibility studies, design, transportation, utility, survey works, construction, permanent structure works, mechanical and electrical installations, and maintenance. Strongly advocating a world systems approach to managing oil and gas projects and programs, the book covers quantitative and qualitative techniques. It addresses technical and managerial aspects of projects and illustrates the concepts with case examples of applications of project management tools and techniques to real-life project scenarios that can serve as lessons learned for best practices. An in-depth examination of project management for oil and gas projects, the book is a handbook for professionals in the field, a guidebook for technical consultants, and a resource for students.