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Detecting Selected Non-Random Patterns with Individuals Control Charts
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mpokojovy/supp.runs.rules
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%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% % Based on the original article % % Detecting Selected Non-Random Patterns with Individuals Control Charts % % by J. Marcus Jobe & Michael Pokojovy % %%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%% Copyright (C): Michael Pokojovy and J. Marcus Jobe (2020) See license.txt for license conditions This R code implements Western Electric runs rules, Nelson's runs rules, Shewhart X and CUSUM charts. Instructions: A) In-control (IC) simulation: Run IC.sim/shell.R Warning: Use HPC computing or reduce the value of nrep (to, say, 10000) in IC.sim/run.Nelson.R and IC.sim/run.other.R B) In-control (OC) simulation: Run IC.sim/shell.R B) Evaluate out-of-control performance of the TS, CUSUM, CUSUM head start and Shewhart X charts Run evaluate_chart_performance.m (Note that the program will use precomputed control limits, etc.) C) Run ds.plots/ds.3plots.init.state.R and ds.plots/ds.3plots.steady.state.R to display sample OC streams for the initial state (steady state size = 0) and steady state (steady state size = 25).
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Detecting Selected Non-Random Patterns with Individuals Control Charts
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