Fissore, 2016 - Google Patents
On the design of a fuzzy logic–based control system for freeze-drying processesFissore, 2016
- Document ID
- 17640168836680284274
- Author
- Fissore D
- Publication year
- Publication venue
- Journal of pharmaceutical sciences
External Links
Snippet
This article is focused on the design of a fuzzy logic–based control system to optimize a drug freeze-drying process. The goal of the system is to keep product temperature as close as possible to the threshold value of the formulation being processed, without trespassing it, in …
- 238000004108 freeze drying 0 title abstract description 65
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Koganti et al. | Investigation of design space for freeze-drying: use of modeling for primary drying segment of a freeze-drying cycle | |
Pisano et al. | Heat transfer in freeze-drying apparatus | |
Pisano et al. | Quality by design in the secondary drying step of a freeze-drying process | |
Fissore | On the design of a fuzzy logic–based control system for freeze-drying processes | |
Barresi et al. | Monitoring of the primary drying of a lyophilization process in vials | |
Pisano et al. | Freeze-drying cycle optimization using model predictive control techniques | |
Chouvenc et al. | Optimization of the freeze-drying cycle: a new model for pressure rise analysis | |
Fissore et al. | Using mathematical modeling and prior knowledge for QbD in freeze-drying processes | |
Bosca et al. | Fast freeze-drying cycle design and optimization using a PAT based on the measurement of product temperature | |
Jaskulski et al. | Predictive CFD modeling of whey protein denaturation in skim milk spray drying powder production | |
Lietta et al. | On the use of infrared thermography for monitoring a vial freeze-drying process | |
Barresi et al. | In-line control of the lyophilization process. A gentle PAT approach using software sensors | |
Fissore et al. | In-line control of a freeze-drying process in vials | |
Ganguly et al. | Freeze-drying simulation framework coupling product attributes and equipment capability: toward accelerating process by equipment modifications | |
Bosca et al. | Risk-based design of a freeze-drying cycle for pharmaceuticals | |
Bosca et al. | Freeze-drying monitoring using a new Process Analytical Technology: Toward a “zero defect” process | |
Trelea et al. | An interactive tool for the optimization of freeze-drying cycles based on quality criteria | |
Chen et al. | Finite element method (FEM) modeling of freeze-drying: monitoring pharmaceutical product robustness during lyophilization | |
Bosca et al. | On the use of model-based tools to optimize in-line a pharmaceuticals freeze-drying process | |
Assegehegn et al. | Understanding and optimization of the secondary drying step of a freeze-drying process: a case study | |
Bourlès et al. | Scale-up of freeze-drying cycles, the use of process analytical technology (PAT), and statistical analysis | |
Fissore et al. | On the use of a micro freeze-dryer for the investigation of the primary drying stage of a freeze-drying process | |
Fissore | Model-based PAT for quality management in pharmaceuticals freeze-drying: state of the art | |
Woo et al. | Master curve behaviour in superheated steam drying of small porous particles | |
Galan | Monitoring and control of industrial freeze-drying operations: The challenge of implementing Quality-by-Design (QbD) |