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Each process unit is described by a complexity factor CF i, i = 1, …, n, and by definition, the complexity factor of atmospheric distillation is one, CF0 = 1.
Each process unit is assigned a complexity factor, CF i, which is multiplied by the unit capacity Q i relative to distillation capacity Q 0, and when summed over all the process units defines the complexity index CI R) of the refinery: {text{CI}}(R) = sumlimits_{i = 0}^{n} {frac{{Q_{i} }}{{Q_{0} }}{text{CF}}_{i} } = 1 + sumlimits_{i = 1}^{n} {frac{{Q_{i} }}{{Q_{0} }}{text{CF}}_{i}, }.
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To address this issue, we propose an enhancement to the G.1070 model wherein the encoding bitrate is normalized by a video complexity factor to compensate for the impact of content complexity on video encoding.
If we define a quantization complexity factor, fn (MQ _input), as f n ( M Q _ i n p u t ) = ∑ i = 0 K - 1 m Q _ i n p u t _ i ∑ i = 0 K - 1 m Q _ r e f _ i, (13).
Industry and health authorities must engage in a dialogue to crystallize all aspects since despite its potentials, value based pricing displays a high complexity factor.
In present paper, the authors describe the application of a new shape complexity factor allowing to estimate the necessity of the preforming steps.
As shown in Equation 13, this change in QP results in a corresponding increase in quantization complexity factor of a factor of approximately 1.1 and a decrease in the number of frame bits by a factor of 1 1. 1. Similarly, a decrease of 1 in QP results in an increase by a factor of 1.1 in the number of frame bits.
Nelson defined the complexity factor of a process unit as the cost of the unit relative to the cost of atmospheric distillation normalized on a capacity basis: {text{CF}}_{i} = {text{CF}}left( {U_{i} } right) = {text{CF}}left( {U_{i},U_{0} } right) = frac{{C(U_{i},Q_{i} )/Q_{i} }}{{C(U_{0},Q_{0} )/Q_{0} }}.
The second term is the complexity factor with an L0 norm, which reduces the number of nonzero interactions in a network configuration and ensures that resulting network models are sparse.
Nelson applied the unit complexity factor to describe the complexity and sophistication of a refinery.
Capacity is not a control variable, but used as input data to normalize the complexity factor.
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