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18. Tribus, M. and Szonyi, G. (1989) An alternative view of the Taguchi approach. Quality
Progress, 22, 46--52.
19. Pignatiello, J.J. and Ramberg, J.S. (1991) Top ten triumphs and tragedies of Genichi Taguchi.
Quality Engineering, 4, 211--225.
20. Nair, V.N. (ed.) (1992) Taguchi’s parameter design: a panel discussion. Technometrics, 34,
127--161.
21. Sullivan, L. P. (1984) Reducing variability: a new approach to quality. Quality Progress, 17(7),
15--21.
22. Burgam, P.M. (1985) Design of experiments -- the Taguchi way. Manufacturing Engineering,
94, 44--47.
23. Ryan, N. E. (1987) ‘Tapping into Taguchi’. Manufacturing Engineering, May, 3--46.
24. Sullivan, L.P. (1987) The power of Taguchi methods. Quality Progress, 20, 76--79.
25. Grant, E.L. and Leavenworth, R.S. (1988) Statistical Quality Control, 6th edn. New York:
McGraw-Hill.
26. Fisher, R.A. (1960) The Design of Experiments, 7th edn. Edinburgh: Oliver and Boyd.
27. Bisgaard, S. (1992) Industrial use of statistically designed experiments: case study references
and some historical anecdotes. Quality Engineering, 4, 547--562.
28. Davies, O.L. (ed.) (1954) The Design and Analysis of Industrial Experiments. Edinburgh: Oliver
and Boyd.
29. Box, G.E.P., Hunter, W.G. and Hunter, J.S. (1978) Statistics for Experimenters. New York: Johan
Wiley & sons, Inc.
30. Box, G.E.P. and Draper, N.R. (1987) Empirical Model-Building and Response Surfaces. New
York: John Wiley & Sons, Inc.
31. Khuri, A.I. and Cornell, I.A. (1987) Response Surfaces: Design and Analysis. New York: Marcel
Dekker.
32. Box, G.E.P. and Draper, N.R. (1969) Evolutionary Operation. New York: John Wiley & Sons,
Inc.
33. Daniel, C. (1976) Applications of Statistics to Industrial Experimentation. New York: John Wiley
& Sons, Inc.
34. Diamond, W.J. (1981) Practical Experiment Designs for Engineers and Scientists. Belmont, CA:
Wadsworth.
35. Shainin, D. and Shainin, P.D. (1990) Analysis of experiments. Transactions of Annual Quality
Congress, ASQC, Milwaukee, Wisconsin, pp. 1071--1077.
36. Goh, T.N. (1989) An efficient empirical approach to process improvement. International
Journal of Quality and Reliability Management, 6, 7--18.
37. Tan, E. and Goh, T.N. (1990) Improved alignment of fibre-optics active devices via response
surface methodology. Quality and Reliability Engineering International, 6, 145--151.
38. Nair, V.N. (1986) Testing in industrial experiments with ordered categorical data (with
discussion). Technometrics, 28, 283--308.
39. Leon, R.V., Shoemaker, A.C. and Kacker, R.N. (1987) Performance measures independent of
adjustment:anexplanationandextensionofTaguchi’ssignaltonoiseratio(withdiscussion).
Technometrics, 29, 253--285.
40. Box, G.E.P. (1988) Signal to noise ratios, performance criteria and transformations (with
discussion). Technometrics, 30, 1--40.
41. Box, G.E.P. and Jones, S. (1990) An investigation of the method of accumulation analysis.
Total Quality Management, 1, 101--113.
42. Hamada, M. and Wu, C.F.J. (1990) A critical look at accumulation analysis and related
methods (with discussion). Technometrics, 32, 119--162.
43. Hamada, M. (1992) An explanation and criticism of minute accumulating analysis. Journal
of Quality Technology, 24, 70--77.
44. McEwan, W., Belavendram, N. and Abou-Ali, M. (1992) Improving quality through robusti-
sation. Quality Forum, 19, 56--61.
45. Dale, B.G. and Cooper, C. (1992) Quality management tools and techniques: an overview
(part II). Quality News, 18, 229--233.
46. Ishikawa, K. (1976) Guide to Quality Control. Tokyo: Asian Productivity Organization.