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Original Articles

Robustness of the time between events CUSUM

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Pages 3435-3444 | Received 06 Jul 2004, Published online: 06 Aug 2010

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Peter Rogerson & Ikuho YamadaPeter Rogerson. 2008. Statistical Detection and Surveillance of Geographic Clusters. Statistical Detection and Surveillance of Geographic Clusters 303 312 .
Y. J. Xie, H. Y. Zhang & T. N. Goh. (2008) A study on EWMA TBE charts with transformed Weibull data. A study on EWMA TBE charts with transformed Weibull data.

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