Biomedical Engineering Reference
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3. Warth B, Rajkai G, Mandenius CF (2010) Evaluation of software sensors for on-line
estimation of culture conditions in an Escherichia coli cultivation expressing a recombinant
protein. J Biotechnol 147(1):37-45. doi: 10.1016/j.jbiotec.2010.02.023
4. Luttmann R, Bracewell DG, Cornelissen G, Gernaey KV, Glassey J, Hass VC, Kaiser C,
Preusse C, Striedner G, Mandenius C-F (2012) Soft sensors in bioprocessing: a status report
and recommendations. Biotechnol J doi: 10.1002/biot.201100506
5. Kadlec P, Gabrys B, Strandt S (2009) Data-driven soft sensors in the process industry.
Comput Chem Eng 33(4):795-814. doi: 10.1016/j.compchemeng.2008.12.012
6. Jain G, Jayaraman G, Kökpinar Ö, Rinas U, Hitzmann B (2011) On-line monitoring of
recombinant bacterial cultures using multi-wavelength fluorescence spectroscopy. Biochem
Eng J 58-59:133-139. doi: 10.1016/j.bej.2011.09.005
7. Jenzsch M, Simutis R, Lübbert A (2006) Generic model control of the specific growth rate in
recombinant Escherichia coli cultivations. J Biotechnol 122(4):483-493
8. Hulhoven X, Wouwer AV, Bogaerts P (2006) Hybrid extended Luenberger-asymptotic
observer for bioprocess state estimation. Chem Eng Sci 61(21):7151-7160. doi: 10.1016/j.ces.
2006.06.018
9. Kalman RE (1960) A new approach to linear filtering and prediction problems. Trans ASME
J Basic Eng (82 (Series D)):35-45. doi:citeulike-article-id:347166
10. Kawohl M, Heine T, King R (2007) Model based estimation and optimal control of fed-batch
fermentation processes for the production of antibiotics. Chem Eng Process Process Intensif
46(11):1223-1241
11. Lidgren L, Lilja O, Krook M, Kriz D (2006) Automatic fermentation control based on a real-
time in situ SIRE biosensor regulated glucose feed. Biosens Bioelectron 21(10):2010-2013
12. Kriz D, Berggren C, Johansson A, Ansell RJ (1998) SIRE-technology. Part I. Amperometric
biosensor based on flow injection of the recognition element and differential measurements.
Instrum Sci Technol 26(1):45-57. doi: 10.1080/10739149808002089
13. Gnoth S, Jenzsch M, Simutis R, Lübbert A (2007) Process analytical technology (PAT):
batch-to-batch reproducibility of fermentation processes by robust process operational design
and control. J Biotechnol 132(2):180-186
14. Arndt M, Hitzmann B (2004) Kalman filter based glucose control at small set points during
fed-batch cultivation of Saccharomyces cerevisiae. Biotechnol Prog 20(1):377-383. doi:
10.1021/bp034156p
15. Arndt M, Kleist S, Miksch G, Friehs K, Flaschel E, Trierweiler J, Hitzmann B (2005)
A feedforward feedback substrate controller based on a Kalman filter for a fed-batch
cultivation of Escherichia coli producing phytase. Comput Chem Eng 29(5):1113-1120
16. Kleist S, Miksch G, Hitzmann B, Arndt M, Friehs K, Flaschel E (2003) Optimization of the
extracellular production of a bacterial phytase with Escherichia coli by using different fed-
batch fermentation strategies. Appl Microbiol Biotechnol 61(5):456-462. doi: 10.1007/s002
53-003-1229-3
17. Klockow C, Hüll D, Hitzmann B (2008) Model based substrate set point control of yeast
cultivation processes based on FIA measurements. Anal Chim Acta 623(1):30-37. doi:
10.1016/j.aca.2008.06.011
18. Roeva O, Slavov T, Dimov I, Dimova S, Kolkovska N (2008) fed-batch cultivation control
based on genetic algorithm PID controller tuning numerical methods and applications, vol
6046. Lecture Notes in Computer Science. Springer, Berlin, pp 289-296. doi: 10.1007/978-
3-642-18466-6_34
19. Tsonyo S, Roeva O (2011) Genetic algorithm tuning of PID controller in smith predictor for
glucose concentration control. Int J BIO Autom 15(2):101-114
20. Wahab NA, Katebi R, Balderud J (2009) Multivariable PID control design for activated
sludge process with nitrification and denitrification. Biochem Eng J 45(3):239-248
21. Biener R, Steinkämper A, Hofmann J (2010) Calorimetric control for high cell density
cultivation of a recombinant Escherichia coli strain. J Biotechnol 146(1-2):45-53
22. Biener R, Steinkämper A, Horn T (2012) Calorimetric control of the specific growth rate
during fed-batch cultures of Saccharomyces cerevisiae. J Biotechnol 160(3-4):195-201
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