Publication | Closed Access
The Tolerance Approach to Sensitivity Analysis of Matrix Coefficients in Linear Programming
34
Citations
6
References
1989
Year
Mathematical ProgrammingNumerical AnalysisMaximum Tolerance PercentageMatrix CoefficientsEngineeringUncertainty QuantificationTolerance ApproachSystems EngineeringConstrained OptimizationSensitivity AnalysisSemidefinite ProgrammingDimensioning And TolerancingLinear ProgrammingApproximation TheoryRobust OptimizationQuadratic ProgrammingOperations Research
The tolerance approach to sensitivity analysis allows for simultaneous and independent variations of the elements of a column or a row of the coefficient matrix in a standard linear programming problem. In particular, the approach yields a maximum tolerance percentage within which the elements of a column may all vary simultaneously and independently from their estimated values while still retaining the same set of basic variables in an optimal solution. A similar result is also derived for the perturbations of the elements of a row.
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