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This paper deals with the problem of evaluating the performance of assembly systems managed with kanbans.
Simulation results are also reported to validate the approximation of the analytical method used to calculate the performance of assembly kanban systems.
Practitioners may use this methodology to reduce cycle time and time loss by tradeoff between budgeted cost and ROI, to optimize the performance of assembly line using simulation approach.
We explore the influence of read and fragment length on performance of assembly methods.
Similar(56)
The effects of some design parameters, i.e., axial configuration, fuel rod diameter, pitch to diameter ratio and duct wall clearance on the thermal-hydraulic and neutronic performance of assemblies are investigated.
The second step of the PRICE assembly strategy, performance of an assembly job for the collection of sequences associated with each initial contig, was designed to dynamically balance efficiency and sensitivity.
To compare the performance of Tiling Assembly with a well-established assembly algorithm, the same procedure was performed using Cufflinks.
Good practice in electrochemistry and electrochemical engineering must be incorporated, together with practical aspects, such as the form of reactants and products, the required performance, ease of assembly, the maintenance schedule and scale-up plans.
The optimization results indicate that the increment in the number of geometrical variables of the assembly remarkably enhances the thermal performance of the assembly, however, it imposes excess complexity in the optimization process.
To further evaluate the performance of each assembly strategy, the size distribution of assembled contigs, the accuracy and the precision and predicted long Open Reading Frame (ORF) numbers, were evaluated.
We evaluated the performance of each assembly strategy from the size distribution of assembled contigs, the accuracy and the precision and predicted long Open Reading Frame (ORF) numbers.
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Justyna Jupowicz-Kozak
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