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AS 135

Algorithm AS 135: Min-max estimates for a linear multiple regression problem.

Keywords for this software

Anything in here will be replaced on browsers that support the canvas element

  • regression
  • minimax regression
  • overdetermined system of linear equations
  • Chebychev curve fitting
  • FFT
  • regression analysis
  • linear programming
  • graphics
  • statistical algorithms
  • curve fitting
  • Chebyshev curve fitting problem
  • linear multiple regression problem
  • min-max estimates
  • computer code implementations
  • variance analysis
  • order statistics
  • multivariate analysis
  • interval prediction
  • distributions
  • minimax
  • dual algorithm
  • exploratory data analysis
  • Chebyshev norm
  • estimation of parameters
  • time series
  • computer programs
  • min-max
  • hypothesis testing
  • statistical learning
  • diagrams

  • URL: www.jstor.org/stable/2...
  • InternetArchive
  • Authors: Armstrong, Ronald D.; Kung, David S.

  • Add information on this software.


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References in zbMATH (referenced in 7 articles , 1 standard article )

Showing results 1 to 7 of 7.
y Sorted by year (citations)

  1. Garatti, Simone; Campi, Marco C.; Carè, Algo: On a class of interval predictor models with universal reliability (2019)
  2. Narula, Subhash C.; Wellington, John F.: Multiple criteria linear regression (2007)
  3. Martynov, G. V.: Probabilistic-statistical programs from “Applied Statistics” (1990)
  4. Armstrong, Ronald D.; Beck, Philip O.: The best parameter subset using the Chebychev curve fitting criterion (1983)
  5. Sklar, Michael G.; Armstrong, Ronald D.: Least absolute value and Chebyshev estimation utilizing least squares results (1982)
  6. Armstrong, Ronald D.; Kung, David S.: A dual method for discrete Chebyshev curve fitting (1980)
  7. Armstrong, Ronald D.; Kung, David S.: Min-max estimates for a linear multiple regression problem (1979)

  • Article statistics & filter:

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  • MSC classification / top
    • Top MSC classes
      • 41 Approximation and...
      • 62 Statistics
      • 65 Numerical analysis
      • 68 Computer science
      • 90 Optimization
    • Other MSC classes
      • 93 Systems theory; control

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    • 2000 - 2004
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