Research Journal of Textile and Apparel, 22(4), 352–369.
https://doi.org/10.1108/RJTA-03-2018-0023
Bongomin, O., Gilibrays Ocen, G., Oyondi Nganyi,
E., Musinguzi, A., & Omara, T. (2020). Exponential Disruptive Technologies and the Required Skills
of Industry 4.0. Journal of Engineering, 2020, 1–17.
https://doi.org/10.1155/2020/4280156
Bongomin, O., Mwasiagi, J. I., Nganyi, E. O., & Nibikora,
I. (2020a). A complex garment assembly line balancing using simulation-based optimization. Engineering
Reports, 1–23. https://doi.org/10.1002/eng2.12258
Bongomin, O., Mwasiagi, J. I., Nganyi, E. O., &
Nibikora, I. (2020b). Improvement of garment assembly
line efficiency using line balancing technique. Engineering Reports, 2(4), 1–18. https://doi.org/10.1002/
eng2.12157
Calabrese, L., Balchin, N., & Mendez-parra, M. (2017). The
phase-out of second-hand clothing imports: what impact
for Tanzania?
Cano, J. A., & Zuluaga-mazo, A. (2019). Operations Management Strategies for the Textile-Clothing Sector in Colombia. In Education Excellence and Innovation Management
through Vision 2020 (pp. 7620–7625).
Chandurkar, P., Kakde, M., & Bhadane, A. (2015). Improve
the Productivity with help of Industrial Engineering Techniques. International Journal on Textile Engineering and
Processes, 1(4), 35–41.
Colovic, G. (2011). Management of Technology Systems in
Garment Industry. New Delhi, India: Woodhead Publishing India Pvt. Ltd.
Colovic, G. (2012). Strategic Management in the Garment Industry. Woodhead Publishing India Pvt Ltd.
https://doi.org/10.1533/9780857095855
Elnaggar, G. (2019). Effect of Operator Skill Level on
Assembly Line Balancing in Apparel Manufacturing: A
Multi-Objective Simulation Optimization Approach. In
Proceedings of the International Conference on Industrial
Engineering and Operations Management, November 2628 (pp. 308–315). Riyadh, Saudi Arabia: IEOM Society
International.
Gebrehiwet, T. B., & Odhuno, A. M. (2017). Improving the
Productivity of the Sewing Section through Line Balancing Techniques: A Case Study of Almeda Garment
Factory. International Journal of Sciences: Basic and
Applied Research (IJSBAR), 36(1), 318–328.
Hamja, A., Maalouf, M., & Hasle, P. (2019). The effect
of lean on occupational health and safety and productivity in the garment industry – a literature review.
Production & Manufacturing Research, 7(1), 316–334.
https://doi.org/10.1080/21693277.2019.1620652
Hekmatpanah, M. (2011). The application of cause and effect
diagram in the oil industry in Iran: The case of four liter
oil canning process of Sepahan Oil Company. African
Journal of Business Management, 5(26), 10900–10907.
https://doi.org/10.5897/AJBM11.1517
Hossain, M. M., Khan, S. A., Islam, S. S., Fattah, J., & Bipul,
M. R. (2018). SMV and Lead Time for T-Shirt Manufacturing. American Journal of Engineering Research, 7(5),
21–25.
Howard, P. M. A., Essuman, M. A., & Asare, T. O. (2019).
Strategies for Determining the Production Cost and
Pricing of Garments in Ghana: A Study of the Fashion Industries. International Journal of Business and
Social Science, 10(3), 75–87. https://doi.org/10.30845/
ijbss.v10n3p7
Immawan, T., & Kurniawan, R. (2016). Analysis of Line Balance Sound Board Glue Production on Assembly Grand
Piano Process: Case Study PT Yamaha Indonesia Idle
time. In Advances in Ergonomics of Manufacturing (pp.
349–359). https://doi.org/10.1007/978-3-319-41697-7
International Labour Organization. (2017). Lean Manufacturing Techniques For Ready Made Garments Industry.
Geneva, Switzerland.
Islam, A., Islam, S. U., & Gupta, J. Das. (2017). Industrial
Engineering and Operations Management Functions in
the Apparel Manufacturing Industry. In Proceedings of
the International Conference on Industrial Engineering
and Operations Management (pp. 886–897).
Jana, P., & Tiwari, M. (2018). Industrial Engineering
in Apparel Manufacturing: A practitioner’s guide. US:
Apparel Resources Pvt. Ltd.
Karthik, T., Ganesan, P., & Gopalakrishnan, D. (2017).
Apparel Manufacturing Technology. Boca Raton, USA:
Taylor & Francis.
Kayar, M. (2017). Study on the Importance of Employee
Performance Assessment and Lost Productive Time Rate
Determination in Garment Assembly Lines. FIBRES
& TEXTILES in Eastern Europe, 5(125), 119–126.
https://doi.org/10.5604/01.3001.0010.4638
Khan, A. M. (2013). Application of Lean Manufacturing to Higher Productivity in the Apparel Industry in
Bangladesh. International Journal of Scientific & Engineering Research, 4(2), 1–10.
Khan, S. A., Islam, T., Elahi, S., Sharif, N., & Mollik, M.
(2019). An attempt to increase agility of garment industry. Journal of Textile Engineering & Fashion Technology
Research, 5(3), 154–161.
Khan, W. M. (2016). Implementation of Modern Garment
Planning Tools & Techniques in Garment Industry of
Bangladesh. International Journal of Engineering and
Advanced Technology Studies, 4(3), 31–44.
Khatun, M. M. (2013). Application of Industrial Engineering
Technique for Better Productivity in Garments Production. International Journal of Science, Environment and
Technology, 2(6), 1361–1369.
Khatun, M. M. (2014). Effect of Time and Motion Study on
Productivity in Garment Sector. International Journal of
Scientific & Engineering Research, 5(5), 825–833.
Kitaw, D., Matebu, A., & Tadesse, S. (2010). Assembly
Line Balancing Using Simulation Technique in a Garment
Manufacturing Firm. Journal of EEA, 27, 69–80.
Kursun, S., & Kalaoglu, F. (2009). Simulation of production line balancing in apparel manufacturing. Fibres and
Textiles in Eastern Europe, 17(4(75)), 68–71.
Lopetegui, M., Yen, P. Y., Lai, A., Jeffries, J., Embi, P., &
Payne, P. (2014). Time motion studies in healthcare: What
are we talking about Journal of Biomedical Informatics,
49, 292–299. https://doi.org/10.1016/j.jbi.2014.02.017
Maralcan, A., & Ilhan, I. (2017). Operations management
tools to be applied for textile. IOP Conference Series:
Materials Science and Engineering, 254(202005), 1–6.
Mohibullah, A. T. M., Takebira, U. M., Mahir, S. Q., Sultana, A., Rana, M., & Hossain, A. K. M. S. (2019).
High-tech machine in RMG Industry: reducing SMV,
lead time and boosting up the productivity. Journal of
Textile Engineering & Fashion Technology, 5(1), 29–34.
https://doi.org/10.15406/jteft.2019.05.00177
Moktadir, A. (2017). Productivity Improvement by Work
Study Technique: A Case on Leather Products Industry
of Bangladesh. Industrial Engineering & Management,
6(1).
Montevechi, J. A. B., Pinho, A. F. de, Leal, F., & Marins, F.
A. S. (2007). Application of Design of Experiments on
the Simulation of a process in an Automotive Industry.
In Proceedings of the 2007 Winter Simulation Conference
(pp. 1601–1609). IEEE.
82
https://doi.org/10.1108/RJTA-03-2018-0023
Bongomin, O., Gilibrays Ocen, G., Oyondi Nganyi,
E., Musinguzi, A., & Omara, T. (2020). Exponential Disruptive Technologies and the Required Skills
of Industry 4.0. Journal of Engineering, 2020, 1–17.
https://doi.org/10.1155/2020/4280156
Bongomin, O., Mwasiagi, J. I., Nganyi, E. O., & Nibikora,
I. (2020a). A complex garment assembly line balancing using simulation-based optimization. Engineering
Reports, 1–23. https://doi.org/10.1002/eng2.12258
Bongomin, O., Mwasiagi, J. I., Nganyi, E. O., &
Nibikora, I. (2020b). Improvement of garment assembly
line efficiency using line balancing technique. Engineering Reports, 2(4), 1–18. https://doi.org/10.1002/
eng2.12157
Calabrese, L., Balchin, N., & Mendez-parra, M. (2017). The
phase-out of second-hand clothing imports: what impact
for Tanzania?
Cano, J. A., & Zuluaga-mazo, A. (2019). Operations Management Strategies for the Textile-Clothing Sector in Colombia. In Education Excellence and Innovation Management
through Vision 2020 (pp. 7620–7625).
Chandurkar, P., Kakde, M., & Bhadane, A. (2015). Improve
the Productivity with help of Industrial Engineering Techniques. International Journal on Textile Engineering and
Processes, 1(4), 35–41.
Colovic, G. (2011). Management of Technology Systems in
Garment Industry. New Delhi, India: Woodhead Publishing India Pvt. Ltd.
Colovic, G. (2012). Strategic Management in the Garment Industry. Woodhead Publishing India Pvt Ltd.
https://doi.org/10.1533/9780857095855
Elnaggar, G. (2019). Effect of Operator Skill Level on
Assembly Line Balancing in Apparel Manufacturing: A
Multi-Objective Simulation Optimization Approach. In
Proceedings of the International Conference on Industrial
Engineering and Operations Management, November 2628 (pp. 308–315). Riyadh, Saudi Arabia: IEOM Society
International.
Gebrehiwet, T. B., & Odhuno, A. M. (2017). Improving the
Productivity of the Sewing Section through Line Balancing Techniques: A Case Study of Almeda Garment
Factory. International Journal of Sciences: Basic and
Applied Research (IJSBAR), 36(1), 318–328.
Hamja, A., Maalouf, M., & Hasle, P. (2019). The effect
of lean on occupational health and safety and productivity in the garment industry – a literature review.
Production & Manufacturing Research, 7(1), 316–334.
https://doi.org/10.1080/21693277.2019.1620652
Hekmatpanah, M. (2011). The application of cause and effect
diagram in the oil industry in Iran: The case of four liter
oil canning process of Sepahan Oil Company. African
Journal of Business Management, 5(26), 10900–10907.
https://doi.org/10.5897/AJBM11.1517
Hossain, M. M., Khan, S. A., Islam, S. S., Fattah, J., & Bipul,
M. R. (2018). SMV and Lead Time for T-Shirt Manufacturing. American Journal of Engineering Research, 7(5),
21–25.
Howard, P. M. A., Essuman, M. A., & Asare, T. O. (2019).
Strategies for Determining the Production Cost and
Pricing of Garments in Ghana: A Study of the Fashion Industries. International Journal of Business and
Social Science, 10(3), 75–87. https://doi.org/10.30845/
ijbss.v10n3p7
Immawan, T., & Kurniawan, R. (2016). Analysis of Line Balance Sound Board Glue Production on Assembly Grand
Piano Process: Case Study PT Yamaha Indonesia Idle
time. In Advances in Ergonomics of Manufacturing (pp.
349–359). https://doi.org/10.1007/978-3-319-41697-7
International Labour Organization. (2017). Lean Manufacturing Techniques For Ready Made Garments Industry.
Geneva, Switzerland.
Islam, A., Islam, S. U., & Gupta, J. Das. (2017). Industrial
Engineering and Operations Management Functions in
the Apparel Manufacturing Industry. In Proceedings of
the International Conference on Industrial Engineering
and Operations Management (pp. 886–897).
Jana, P., & Tiwari, M. (2018). Industrial Engineering
in Apparel Manufacturing: A practitioner’s guide. US:
Apparel Resources Pvt. Ltd.
Karthik, T., Ganesan, P., & Gopalakrishnan, D. (2017).
Apparel Manufacturing Technology. Boca Raton, USA:
Taylor & Francis.
Kayar, M. (2017). Study on the Importance of Employee
Performance Assessment and Lost Productive Time Rate
Determination in Garment Assembly Lines. FIBRES
& TEXTILES in Eastern Europe, 5(125), 119–126.
https://doi.org/10.5604/01.3001.0010.4638
Khan, A. M. (2013). Application of Lean Manufacturing to Higher Productivity in the Apparel Industry in
Bangladesh. International Journal of Scientific & Engineering Research, 4(2), 1–10.
Khan, S. A., Islam, T., Elahi, S., Sharif, N., & Mollik, M.
(2019). An attempt to increase agility of garment industry. Journal of Textile Engineering & Fashion Technology
Research, 5(3), 154–161.
Khan, W. M. (2016). Implementation of Modern Garment
Planning Tools & Techniques in Garment Industry of
Bangladesh. International Journal of Engineering and
Advanced Technology Studies, 4(3), 31–44.
Khatun, M. M. (2013). Application of Industrial Engineering
Technique for Better Productivity in Garments Production. International Journal of Science, Environment and
Technology, 2(6), 1361–1369.
Khatun, M. M. (2014). Effect of Time and Motion Study on
Productivity in Garment Sector. International Journal of
Scientific & Engineering Research, 5(5), 825–833.
Kitaw, D., Matebu, A., & Tadesse, S. (2010). Assembly
Line Balancing Using Simulation Technique in a Garment
Manufacturing Firm. Journal of EEA, 27, 69–80.
Kursun, S., & Kalaoglu, F. (2009). Simulation of production line balancing in apparel manufacturing. Fibres and
Textiles in Eastern Europe, 17(4(75)), 68–71.
Lopetegui, M., Yen, P. Y., Lai, A., Jeffries, J., Embi, P., &
Payne, P. (2014). Time motion studies in healthcare: What
are we talking about Journal of Biomedical Informatics,
49, 292–299. https://doi.org/10.1016/j.jbi.2014.02.017
Maralcan, A., & Ilhan, I. (2017). Operations management
tools to be applied for textile. IOP Conference Series:
Materials Science and Engineering, 254(202005), 1–6.
Mohibullah, A. T. M., Takebira, U. M., Mahir, S. Q., Sultana, A., Rana, M., & Hossain, A. K. M. S. (2019).
High-tech machine in RMG Industry: reducing SMV,
lead time and boosting up the productivity. Journal of
Textile Engineering & Fashion Technology, 5(1), 29–34.
https://doi.org/10.15406/jteft.2019.05.00177
Moktadir, A. (2017). Productivity Improvement by Work
Study Technique: A Case on Leather Products Industry
of Bangladesh. Industrial Engineering & Management,
6(1).
Montevechi, J. A. B., Pinho, A. F. de, Leal, F., & Marins, F.
A. S. (2007). Application of Design of Experiments on
the Simulation of a process in an Automotive Industry.
In Proceedings of the 2007 Winter Simulation Conference
(pp. 1601–1609). IEEE.
82
