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TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ

Year 2019, Volume: 7 Issue: 1, 115 - 134, 01.03.2019
https://doi.org/10.15317/Scitech.2019.186

Abstract

Literatürde
tam zamanında üretim sistemi konusunda siparişlerin tek tip üründen oluştuğu
varsayılmıştır. Bu çalışmada ise literatürden farklı olarak siparişlerin farklı
ürün bilgilerini içerebildiği üretim sistemi üzerinde durulmuştur. Kanban
kartları ile çalışan bir akış tipi üretim hattı çeşitli varsayımlar altında
SIMAN dili kullanılarak modellenmiştir. Çeşitli faktörler belirlenerek üç
farklı deney seti oluşturulmuştur. Bu deney setleri ile faktörlerdeki
değişikliklerin etkisi gözlemlenmiştir. Faktörlerdeki değişimin etkisini
gözlemlemek için farklı performans ölçütleri belirlenmiştir. Sonuçlar
istatistiksel olarak yorumlanmış ve analiz edilmiştir.

References

  • Azadeh, A., B. Bidokhti, S.M.R. Sakkaki, 2005. Design of practical optimum JIT systems by integration of computer simulation and analysis of variance, Computers & Industrial Engineering, 49: 504–519.
  • Baykoç, Ö. F., Serpil Erol, 1998. Simulation modelling and analysis of a JIT production system, Int. J. Production Economics, 55: 203-212. Ezema, C. N., Eric C. Okafor, Christiana C. Okezie, 2017. Industrial design and simulation of a JIT material handling system, Ezema et al., Cogent Engineering, 4: 1292864.
  • Green Jr, K. W., R. Anthony Inman, Laura M. Birou, Dwayne Whitten 2014. Total JIT (T-JIT) and its impact on supply chain competency and organizational performance, Int. J.Production Economics, 147: 125–135.
  • Güneri, A.F., A. Kuzu, A. Taskin Gumus, 2008. Flexible kanbans to enhance volume flexibility in a JIT environment: a simulation based comparison via ANNs, International Journal of Production Research 47: 6807–6819.
  • Huang, P. Y., Rees, L. P. and Taylor, B. W., 1983. A simulation analysis of the Japanese JIT technique (with kanbans) for a multiline. Multistage Production System, Decision Sciences, 14: 326-343.
  • Hum, S. H., Chee-Kwong Lee, 1998. JIT Scheduling Rules: a Simulation Evaluation, Omega, Int. J. Mgmt Sci., Vol. 26, No. 3, pp. 381-395.
  • Husseini, S.M.M., O’Brien, C., and Hosseini, S.T., 2006. A method to enhance volume flexibility in JIT production control. International Journal of Production Economics, 104 (2), 653–665.
  • Jeong, W. S., Soowon Chang, JeongWook Son, June-Seong Yi, 2016. BIM-Integrated Construction Operation Simulation for Just-In-Time Production Management, Sustainability, 8: 1106.
  • Kong, L., Heng Li, Hanbin Luoa, Lieyun Ding, Xiaochun Luo, Martin Skitmore, 2017. Optimal single- machine batch scheduling for the manufacture, transportation and JIT assembly of precast construction with changeover costs within due dates, Automation in Construction, 81: 34–43.
  • Maiga, A. S., Fred A. Jacobs, 2009. JIT performance effects: A research note, Advances in International Accounting, 25: 183–189.
  • Pisuchpen, R. 2012. Integration of JIT flexible manufacturing, assembly and disassembly using a simulation approach, Emerald Insight, Vol. 32 Issue: 1, pp.51-61.
  • Sandanayake, Y.G., C.F. Oduoza, D.G. Proverbs, 2008. A systematic modelling and simulation pproach for JIT performance optimisation, Robotics and Computer-Integrated Manufacturing, 24: 735– 743.
  • Savsar, M., Abdullah Al-Jawinib, 1995. Simulation analysis of just-in-time production systems, Int. J. Production Economics, 42: 67-78.
  • Torkul, O., Esra Kurt, 2001. Tam Zamanında İmalat Ortamında Sıralama Kurallarının Karşılaştırılması İçin Bir Benzetim Modeli, SAÜ Fen Bilimleri Enstitüsü Dergisi, 5.Cilt, 1.Sayı: 21-27.
  • Wang, Y. C., Toly Chen, Hsiangtsai Chiang, Hui-Chen Pan, 2016, A simulation analysis of part launching and order collection decisions for a flexible manufacturing system, Simulation Modelling Practice and Theory, 69: 80–91.
  • Wielgama, P. S., & Mills, R. G. S., 1995. Use of simulation in the design of a JIT system, International Journal of Operations and Production Management, 15(9).
  • Yavuz, H., A. Satır, 1995. A kanban-based simulation study of a mixed model just-in-time manufacturing line, International Journal of Production Research, 33: 1027-1048.

Performance Analysis of a Serial Production Line Based on Just in-Time Phylosophy Using Simulation Technique

Year 2019, Volume: 7 Issue: 1, 115 - 134, 01.03.2019
https://doi.org/10.15317/Scitech.2019.186

Abstract

In the literature, it is assumed that the orders
are made of a single type of product in a just-in-time production system. In
this study, contrary to the literature, the production system in which orders
can contain different product information is studied. A serial production line
system working with kanban cards is modeled using the SIMAN language under
various assumptions. Three different experiment clusters are designed by
determining various factors. The effects of changes in factors are observed
with these experimental clusters. Different performance measures are identified
to observe the effect of change in factors. Findings of experimental results
are reported.

References

  • Azadeh, A., B. Bidokhti, S.M.R. Sakkaki, 2005. Design of practical optimum JIT systems by integration of computer simulation and analysis of variance, Computers & Industrial Engineering, 49: 504–519.
  • Baykoç, Ö. F., Serpil Erol, 1998. Simulation modelling and analysis of a JIT production system, Int. J. Production Economics, 55: 203-212. Ezema, C. N., Eric C. Okafor, Christiana C. Okezie, 2017. Industrial design and simulation of a JIT material handling system, Ezema et al., Cogent Engineering, 4: 1292864.
  • Green Jr, K. W., R. Anthony Inman, Laura M. Birou, Dwayne Whitten 2014. Total JIT (T-JIT) and its impact on supply chain competency and organizational performance, Int. J.Production Economics, 147: 125–135.
  • Güneri, A.F., A. Kuzu, A. Taskin Gumus, 2008. Flexible kanbans to enhance volume flexibility in a JIT environment: a simulation based comparison via ANNs, International Journal of Production Research 47: 6807–6819.
  • Huang, P. Y., Rees, L. P. and Taylor, B. W., 1983. A simulation analysis of the Japanese JIT technique (with kanbans) for a multiline. Multistage Production System, Decision Sciences, 14: 326-343.
  • Hum, S. H., Chee-Kwong Lee, 1998. JIT Scheduling Rules: a Simulation Evaluation, Omega, Int. J. Mgmt Sci., Vol. 26, No. 3, pp. 381-395.
  • Husseini, S.M.M., O’Brien, C., and Hosseini, S.T., 2006. A method to enhance volume flexibility in JIT production control. International Journal of Production Economics, 104 (2), 653–665.
  • Jeong, W. S., Soowon Chang, JeongWook Son, June-Seong Yi, 2016. BIM-Integrated Construction Operation Simulation for Just-In-Time Production Management, Sustainability, 8: 1106.
  • Kong, L., Heng Li, Hanbin Luoa, Lieyun Ding, Xiaochun Luo, Martin Skitmore, 2017. Optimal single- machine batch scheduling for the manufacture, transportation and JIT assembly of precast construction with changeover costs within due dates, Automation in Construction, 81: 34–43.
  • Maiga, A. S., Fred A. Jacobs, 2009. JIT performance effects: A research note, Advances in International Accounting, 25: 183–189.
  • Pisuchpen, R. 2012. Integration of JIT flexible manufacturing, assembly and disassembly using a simulation approach, Emerald Insight, Vol. 32 Issue: 1, pp.51-61.
  • Sandanayake, Y.G., C.F. Oduoza, D.G. Proverbs, 2008. A systematic modelling and simulation pproach for JIT performance optimisation, Robotics and Computer-Integrated Manufacturing, 24: 735– 743.
  • Savsar, M., Abdullah Al-Jawinib, 1995. Simulation analysis of just-in-time production systems, Int. J. Production Economics, 42: 67-78.
  • Torkul, O., Esra Kurt, 2001. Tam Zamanında İmalat Ortamında Sıralama Kurallarının Karşılaştırılması İçin Bir Benzetim Modeli, SAÜ Fen Bilimleri Enstitüsü Dergisi, 5.Cilt, 1.Sayı: 21-27.
  • Wang, Y. C., Toly Chen, Hsiangtsai Chiang, Hui-Chen Pan, 2016, A simulation analysis of part launching and order collection decisions for a flexible manufacturing system, Simulation Modelling Practice and Theory, 69: 80–91.
  • Wielgama, P. S., & Mills, R. G. S., 1995. Use of simulation in the design of a JIT system, International Journal of Operations and Production Management, 15(9).
  • Yavuz, H., A. Satır, 1995. A kanban-based simulation study of a mixed model just-in-time manufacturing line, International Journal of Production Research, 33: 1027-1048.
There are 17 citations in total.

Details

Primary Language Turkish
Subjects Engineering
Journal Section Articles
Authors

Mümüne Sert This is me

Saadettin Erhan Kesen

Publication Date March 1, 2019
Published in Issue Year 2019 Volume: 7 Issue: 1

Cite

APA Sert, M., & Kesen, S. E. (2019). TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi, 7(1), 115-134. https://doi.org/10.15317/Scitech.2019.186
AMA Sert M, Kesen SE. TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ. sujest. March 2019;7(1):115-134. doi:10.15317/Scitech.2019.186
Chicago Sert, Mümüne, and Saadettin Erhan Kesen. “TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ”. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi 7, no. 1 (March 2019): 115-34. https://doi.org/10.15317/Scitech.2019.186.
EndNote Sert M, Kesen SE (March 1, 2019) TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi 7 1 115–134.
IEEE M. Sert and S. E. Kesen, “TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ”, sujest, vol. 7, no. 1, pp. 115–134, 2019, doi: 10.15317/Scitech.2019.186.
ISNAD Sert, Mümüne - Kesen, Saadettin Erhan. “TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ”. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi 7/1 (March 2019), 115-134. https://doi.org/10.15317/Scitech.2019.186.
JAMA Sert M, Kesen SE. TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ. sujest. 2019;7:115–134.
MLA Sert, Mümüne and Saadettin Erhan Kesen. “TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ”. Selçuk Üniversitesi Mühendislik, Bilim Ve Teknoloji Dergisi, vol. 7, no. 1, 2019, pp. 115-34, doi:10.15317/Scitech.2019.186.
Vancouver Sert M, Kesen SE. TAM ZAMANINDA ÜRETİM FELSEFİNE DAYALI BİR SERİ ÜRETİM HATTININ SİMÜLASYON TEKNİĞİYLE PERFORMANS ANALİZİ. sujest. 2019;7(1):115-34.

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