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Fig 1.

k regions upward VSI RS MCV chart with its corresponding scores and probabilities.

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Fig 1 Expand

Fig 2.

k regions downward VSI RS MCV chart with its corresponding scores and probabilities.

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Fig 2 Expand

Table 1.

Optimal parameters of the upward VSI RS MCV chart in minimizing ATS(τ) when = 200 and v = 2.

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Table 1 Expand

Table 2.

Optimal parameters of the downward VSI RS MCV chart in minimizing ATS(τ) when = 200 and v = 2.

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Table 2 Expand

Table 3.

Optimal parameters of the upward VSI RS MCV chart in minimizing ATS(τ) when = 500 and v = 2.

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Table 3 Expand

Table 4.

Optimal parameters of the downward VSI RS MCV chart in minimizing ATS(τ) when = 500 and v = 2.

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Table 4 Expand

Table 5.

Optimal parameters of the VSI RS MCV chart in minimizing when>.

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Table 5 Expand

Table 6.

ATS(τ) values for the upward MCV, RS MCV and VSI RS MCV charts for different n, , and G values.

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Table 6 Expand

Table 7.

ATS(τ) values for the downward MCV, RS MCV and VSI RS MCV charts for different n, , and G values.

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Table 7 Expand

Table 8.

values of the upward and downward MCV, RS MCV and VSI RS MCV charts for different n, , and G values.

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Table 8 Expand

Table 9.

SDTS(τ) values of the upward MCV, RS MCV and VSI RS MCV charts for different n, , and G values.

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Table 9 Expand

Table 10.

SDTS(τ) values of the downward MCV, RS MCV and VSI RS MCV charts for different n, , and G values.

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Table 10 Expand

Table 11.

Phase-I dataset for the example.

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Table 11 Expand

Table 12.

Phase-II dataset for the example.

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Table 12 Expand

Fig 3.

Implementation of the upward VSI RS MCV chart.

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Fig 3 Expand

Fig 4.

Implementation of the downward VSI RS MCV chart.

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Fig 4 Expand