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Publications

A searchable record of ICResG research output — journal articles, conference papers, technical reports and more. Search by author, title, year, venue, DOI, research area or keyword.

292 publications found.

Journal 2017 Cited by 16
Omar Zakary, Mostafa Rachik, Ilias Elmouki, Samih Lazaiz — Advances in Difference Equations — DOI: 10.1186/s13662-017-1168-4
Cite this publication
APA

Zakary, O., Rachik, M., Elmouki, I., & Lazaiz, S. (2017). A multi-regions discrete-time epidemic model with a travel-blocking vicinity optimal control approach on patches. Advances in Difference Equations. https://doi.org/10.1186/s13662-017-1168-4

Harvard

Zakary, O., Rachik, M., Elmouki, I. and Lazaiz, S. (2017) 'A multi-regions discrete-time epidemic model with a travel-blocking vicinity optimal control approach on patches', Advances in Difference Equations. doi: 10.1186/s13662-017-1168-4.

IEEE

O. Zakary, M. Rachik, I. Elmouki, and S. Lazaiz, "A multi-regions discrete-time epidemic model with a travel-blocking vicinity optimal control approach on patches," Advances in Difference Equations, 2017. doi: 10.1186/s13662-017-1168-4.

Vancouver

Zakary O, Rachik M, Elmouki I, Lazaiz S. A multi-regions discrete-time epidemic model with a travel-blocking vicinity optimal control approach on patches. Advances in Difference Equations. 2017. doi: 10.1186/s13662-017-1168-4.

MLA

Zakary, Omar, et al.. "A multi-regions discrete-time epidemic model with a travel-blocking vicinity optimal control approach on patches." Advances in Difference Equations, 2017. https://doi.org/10.1186/s13662-017-1168-4.

Chicago

Zakary, O., Rachik, M., Elmouki, I., Lazaiz, S.. "A multi-regions discrete-time epidemic model with a travel-blocking vicinity optimal control approach on patches." Advances in Difference Equations (2017). https://doi.org/10.1186/s13662-017-1168-4.

BibTeX

@article{zakary2017, title={A multi-regions discrete-time epidemic model with a travel-blocking vicinity optimal control approach on patches}, author={Zakary, Omar and Rachik, Mostafa and Elmouki, Ilias and Lazaiz, Samih}, journal={Advances in Difference Equations}, year={2017}, doi={10.1186/s13662-017-1168-4}, }

Journal 2017 Cited by 2
Kanza Chouayakh, Mostafa Rachik, Khalid Satori, Chakib El Bekkali, Ilias Elmouki — Modeling Earth Systems and Environment — DOI: 10.1007/s40808-017-0318-8
Cite this publication
APA

Chouayakh, K., Rachik, M., Satori, K., Bekkali, C. E., & Elmouki, I. (2017). Trophic and halieutic dynamics of grazer–predator fishes: harvesting optimal control policies for the environmental sustainability and bioeconomic cases. Modeling Earth Systems and Environment. https://doi.org/10.1007/s40808-017-0318-8

Harvard

Chouayakh, K., Rachik, M., Satori, K., Bekkali, C.E. and Elmouki, I. (2017) 'Trophic and halieutic dynamics of grazer–predator fishes: harvesting optimal control policies for the environmental sustainability and bioeconomic cases', Modeling Earth Systems and Environment. doi: 10.1007/s40808-017-0318-8.

IEEE

K. Chouayakh, M. Rachik, K. Satori, C. E. Bekkali, and I. Elmouki, "Trophic and halieutic dynamics of grazer–predator fishes: harvesting optimal control policies for the environmental sustainability and bioeconomic cases," Modeling Earth Systems and Environment, 2017. doi: 10.1007/s40808-017-0318-8.

Vancouver

Chouayakh K, Rachik M, Satori K, Bekkali CE, Elmouki I. Trophic and halieutic dynamics of grazer–predator fishes: harvesting optimal control policies for the environmental sustainability and bioeconomic cases. Modeling Earth Systems and Environment. 2017. doi: 10.1007/s40808-017-0318-8.

MLA

Chouayakh, Kanza, et al.. "Trophic and halieutic dynamics of grazer–predator fishes: harvesting optimal control policies for the environmental sustainability and bioeconomic cases." Modeling Earth Systems and Environment, 2017. https://doi.org/10.1007/s40808-017-0318-8.

Chicago

Chouayakh, K., Rachik, M., Satori, K., Bekkali, C. E., Elmouki, I.. "Trophic and halieutic dynamics of grazer–predator fishes: harvesting optimal control policies for the environmental sustainability and bioeconomic cases." Modeling Earth Systems and Environment (2017). https://doi.org/10.1007/s40808-017-0318-8.

BibTeX

@article{chouayakh2017, title={Trophic and halieutic dynamics of grazer–predator fishes: harvesting optimal control policies for the environmental sustainability and bioeconomic cases}, author={Chouayakh, Kanza and Rachik, Mostafa and Satori, Khalid and Bekkali, Chakib El and Elmouki, Ilias}, journal={Modeling Earth Systems and Environment}, year={2017}, doi={10.1007/s40808-017-0318-8}, }

Journal 2017 Cited by 7
Omar Zakary, Mostafa Rachik, Ilias Elmouki — Infectious Disease Modelling — DOI: 10.1016/j.idm.2017.06.003
Cite this publication
APA

Zakary, O., Rachik, M., & Elmouki, I. (2017). A new epidemic modeling approach: Multi-regions discrete-time model with travel-blocking vicinity optimal control strategy. Infectious Disease Modelling. https://doi.org/10.1016/j.idm.2017.06.003

Harvard

Zakary, O., Rachik, M. and Elmouki, I. (2017) 'A new epidemic modeling approach: Multi-regions discrete-time model with travel-blocking vicinity optimal control strategy', Infectious Disease Modelling. doi: 10.1016/j.idm.2017.06.003.

IEEE

O. Zakary, M. Rachik, and I. Elmouki, "A new epidemic modeling approach: Multi-regions discrete-time model with travel-blocking vicinity optimal control strategy," Infectious Disease Modelling, 2017. doi: 10.1016/j.idm.2017.06.003.

Vancouver

Zakary O, Rachik M, Elmouki I. A new epidemic modeling approach: Multi-regions discrete-time model with travel-blocking vicinity optimal control strategy. Infectious Disease Modelling. 2017. doi: 10.1016/j.idm.2017.06.003.

MLA

Zakary, Omar, et al.. "A new epidemic modeling approach: Multi-regions discrete-time model with travel-blocking vicinity optimal control strategy." Infectious Disease Modelling, 2017. https://doi.org/10.1016/j.idm.2017.06.003.

Chicago

Zakary, O., Rachik, M., Elmouki, I.. "A new epidemic modeling approach: Multi-regions discrete-time model with travel-blocking vicinity optimal control strategy." Infectious Disease Modelling (2017). https://doi.org/10.1016/j.idm.2017.06.003.

BibTeX

@article{zakary2017, title={A new epidemic modeling approach: Multi-regions discrete-time model with travel-blocking vicinity optimal control strategy}, author={Zakary, Omar and Rachik, Mostafa and Elmouki, Ilias}, journal={Infectious Disease Modelling}, year={2017}, doi={10.1016/j.idm.2017.06.003}, }

Journal 2017 Cited by 4
Meryem Alkama, Mostafa Rachik, Ilias Elmouki — International Journal of Applied and Computational Mathematics — DOI: 10.1007/s40819-017-0337-1
Cite this publication
APA

Alkama, M., Rachik, M., & Elmouki, I. (2017). A Discrete Isoperimetric Optimal Control Approach for BCG Immunotherapy in Superficial Bladder Cancer: Discussions on Results of Different Optimal Doses. International Journal of Applied and Computational Mathematics. https://doi.org/10.1007/s40819-017-0337-1

Harvard

Alkama, M., Rachik, M. and Elmouki, I. (2017) 'A Discrete Isoperimetric Optimal Control Approach for BCG Immunotherapy in Superficial Bladder Cancer: Discussions on Results of Different Optimal Doses', International Journal of Applied and Computational Mathematics. doi: 10.1007/s40819-017-0337-1.

IEEE

M. Alkama, M. Rachik, and I. Elmouki, "A Discrete Isoperimetric Optimal Control Approach for BCG Immunotherapy in Superficial Bladder Cancer: Discussions on Results of Different Optimal Doses," International Journal of Applied and Computational Mathematics, 2017. doi: 10.1007/s40819-017-0337-1.

Vancouver

Alkama M, Rachik M, Elmouki I. A Discrete Isoperimetric Optimal Control Approach for BCG Immunotherapy in Superficial Bladder Cancer: Discussions on Results of Different Optimal Doses. International Journal of Applied and Computational Mathematics. 2017. doi: 10.1007/s40819-017-0337-1.

MLA

Alkama, Meryem, et al.. "A Discrete Isoperimetric Optimal Control Approach for BCG Immunotherapy in Superficial Bladder Cancer: Discussions on Results of Different Optimal Doses." International Journal of Applied and Computational Mathematics, 2017. https://doi.org/10.1007/s40819-017-0337-1.

Chicago

Alkama, M., Rachik, M., Elmouki, I.. "A Discrete Isoperimetric Optimal Control Approach for BCG Immunotherapy in Superficial Bladder Cancer: Discussions on Results of Different Optimal Doses." International Journal of Applied and Computational Mathematics (2017). https://doi.org/10.1007/s40819-017-0337-1.

BibTeX

@article{alkama2017, title={A Discrete Isoperimetric Optimal Control Approach for BCG Immunotherapy in Superficial Bladder Cancer: Discussions on Results of Different Optimal Doses}, author={Alkama, Meryem and Rachik, Mostafa and Elmouki, Ilias}, journal={International Journal of Applied and Computational Mathematics}, year={2017}, doi={10.1007/s40819-017-0337-1}, }

Conference 2017 Cited by 0
Tejaswini H — International Conference On Smart Technologies For Smart Nation (SmartTechCon)
Cite this publication
APA

H, T. (2017). Cascade Ciphering Technique for Confidential Authenticated and Integrity Preserved Transmission of Images over a Network. International Conference On Smart Technologies For Smart Nation (SmartTechCon).

Harvard

H, T. (2017) 'Cascade Ciphering Technique for Confidential Authenticated and Integrity Preserved Transmission of Images over a Network', International Conference On Smart Technologies For Smart Nation (SmartTechCon).

IEEE

T. H, "Cascade Ciphering Technique for Confidential Authenticated and Integrity Preserved Transmission of Images over a Network," International Conference On Smart Technologies For Smart Nation (SmartTechCon), 2017.

Vancouver

H T. Cascade Ciphering Technique for Confidential Authenticated and Integrity Preserved Transmission of Images over a Network. International Conference On Smart Technologies For Smart Nation (SmartTechCon). 2017.

MLA

H, Tejaswini. "Cascade Ciphering Technique for Confidential Authenticated and Integrity Preserved Transmission of Images over a Network." International Conference On Smart Technologies For Smart Nation (SmartTechCon), 2017.

Chicago

H, T.. "Cascade Ciphering Technique for Confidential Authenticated and Integrity Preserved Transmission of Images over a Network." International Conference On Smart Technologies For Smart Nation (SmartTechCon) (2017).

BibTeX

@inproceedings{h2017, title={Cascade Ciphering Technique for Confidential Authenticated and Integrity Preserved Transmission of Images over a Network}, author={H, Tejaswini}, booktitle={International Conference On Smart Technologies For Smart Nation (SmartTechCon)}, year={2017}, }

Journal 2016 Cited by 0
Benjamin Quito — National Library of the Philippines
Cite this publication
APA

Quito, B. (2016). Smart Traffic Operations Procedure: The use of Security microchips, Wi-Fi, QR-Codes, Command Center, Handheld Devices, Smart Operations Procedures, and creation of new office in Enhancing Traffic Apprehension and Operations in EDSA. National Library of the Philippines.

Harvard

Quito, B. (2016) 'Smart Traffic Operations Procedure: The use of Security microchips, Wi-Fi, QR-Codes, Command Center, Handheld Devices, Smart Operations Procedures, and creation of new office in Enhancing Traffic Apprehension and Operations in EDSA', National Library of the Philippines.

IEEE

B. Quito, "Smart Traffic Operations Procedure: The use of Security microchips, Wi-Fi, QR-Codes, Command Center, Handheld Devices, Smart Operations Procedures, and creation of new office in Enhancing Traffic Apprehension and Operations in EDSA," National Library of the Philippines, 2016.

Vancouver

Quito B. Smart Traffic Operations Procedure: The use of Security microchips, Wi-Fi, QR-Codes, Command Center, Handheld Devices, Smart Operations Procedures, and creation of new office in Enhancing Traffic Apprehension and Operations in EDSA. National Library of the Philippines. 2016.

MLA

Quito, Benjamin. "Smart Traffic Operations Procedure: The use of Security microchips, Wi-Fi, QR-Codes, Command Center, Handheld Devices, Smart Operations Procedures, and creation of new office in Enhancing Traffic Apprehension and Operations in EDSA." National Library of the Philippines, 2016.

Chicago

Quito, B.. "Smart Traffic Operations Procedure: The use of Security microchips, Wi-Fi, QR-Codes, Command Center, Handheld Devices, Smart Operations Procedures, and creation of new office in Enhancing Traffic Apprehension and Operations in EDSA." National Library of the Philippines (2016).

BibTeX

@article{quito2016, title={Smart Traffic Operations Procedure: The use of Security microchips, Wi-Fi, QR-Codes, Command Center, Handheld Devices, Smart Operations Procedures, and creation of new office in Enhancing Traffic Apprehension and Operations in EDSA}, author={Quito, Benjamin}, journal={National Library of the Philippines}, year={2016}, }

Journal 2016 Cited by 0
Benjamin Quito — National Library of the Philippines
Cite this publication
APA

Quito, B. (2016). Road Safety and Traffic Education: The Institutionalization and Standardization of Road Safety and Traffic Education in the Philippines. National Library of the Philippines.

Harvard

Quito, B. (2016) 'Road Safety and Traffic Education: The Institutionalization and Standardization of Road Safety and Traffic Education in the Philippines', National Library of the Philippines.

IEEE

B. Quito, "Road Safety and Traffic Education: The Institutionalization and Standardization of Road Safety and Traffic Education in the Philippines," National Library of the Philippines, 2016.

Vancouver

Quito B. Road Safety and Traffic Education: The Institutionalization and Standardization of Road Safety and Traffic Education in the Philippines. National Library of the Philippines. 2016.

MLA

Quito, Benjamin. "Road Safety and Traffic Education: The Institutionalization and Standardization of Road Safety and Traffic Education in the Philippines." National Library of the Philippines, 2016.

Chicago

Quito, B.. "Road Safety and Traffic Education: The Institutionalization and Standardization of Road Safety and Traffic Education in the Philippines." National Library of the Philippines (2016).

BibTeX

@article{quito2016, title={Road Safety and Traffic Education: The Institutionalization and Standardization of Road Safety and Traffic Education in the Philippines}, author={Quito, Benjamin}, journal={National Library of the Philippines}, year={2016}, }

Journal 2016 Cited by 0
Benjamin Quito — National Library of the Philippines
Cite this publication
APA

Quito, B. (2016). Project EDSA: A Three-fold System for an efficient managment of traffic situation in EDSA. National Library of the Philippines.

Harvard

Quito, B. (2016) 'Project EDSA: A Three-fold System for an efficient managment of traffic situation in EDSA', National Library of the Philippines.

IEEE

B. Quito, "Project EDSA: A Three-fold System for an efficient managment of traffic situation in EDSA," National Library of the Philippines, 2016.

Vancouver

Quito B. Project EDSA: A Three-fold System for an efficient managment of traffic situation in EDSA. National Library of the Philippines. 2016.

MLA

Quito, Benjamin. "Project EDSA: A Three-fold System for an efficient managment of traffic situation in EDSA." National Library of the Philippines, 2016.

Chicago

Quito, B.. "Project EDSA: A Three-fold System for an efficient managment of traffic situation in EDSA." National Library of the Philippines (2016).

BibTeX

@article{quito2016, title={Project EDSA: A Three-fold System for an efficient managment of traffic situation in EDSA}, author={Quito, Benjamin}, journal={National Library of the Philippines}, year={2016}, }

Conference 2016 Cited by 1
Henry Ugochukwu Ukwu, Reza Sirjani — 2016 HONET-ICT — DOI: 10.1109/honet.2016.7753429
Cite this publication
APA

Ukwu, H. U. & Sirjani, R. (2016). Unit commitment in a power generation system using a modified improved-dynamic programming. 2016 HONET-ICT. https://doi.org/10.1109/honet.2016.7753429

Harvard

Ukwu, H.U. and Sirjani, R. (2016) 'Unit commitment in a power generation system using a modified improved-dynamic programming', 2016 HONET-ICT. doi: 10.1109/honet.2016.7753429.

IEEE

H. U. Ukwu and R. Sirjani, "Unit commitment in a power generation system using a modified improved-dynamic programming," 2016 HONET-ICT, 2016. doi: 10.1109/honet.2016.7753429.

Vancouver

Ukwu HU, Sirjani R. Unit commitment in a power generation system using a modified improved-dynamic programming. 2016 HONET-ICT. 2016. doi: 10.1109/honet.2016.7753429.

MLA

Ukwu, Henry Ugochukwu, and Reza Sirjani. "Unit commitment in a power generation system using a modified improved-dynamic programming." 2016 HONET-ICT, 2016. https://doi.org/10.1109/honet.2016.7753429.

Chicago

Ukwu, H. U., Sirjani, R.. "Unit commitment in a power generation system using a modified improved-dynamic programming." 2016 HONET-ICT (2016). https://doi.org/10.1109/honet.2016.7753429.

BibTeX

@inproceedings{ukwu2016, title={Unit commitment in a power generation system using a modified improved-dynamic programming}, author={Ukwu, Henry Ugochukwu and Sirjani, Reza}, booktitle={2016 HONET-ICT}, year={2016}, doi={10.1109/honet.2016.7753429}, }

Journal 2016 Cited by 9
Amine Hamdache, Smahane Saadi, Ilias Elmouki — International Journal of Dynamics and Control — DOI: 10.1007/s40435-015-0205-y
Cite this publication
APA

Hamdache, A., Saadi, S., & Elmouki, I. (2016). Nominal and neighboring-optimal control approaches to the adoptive immunotherapy for cancer. International Journal of Dynamics and Control. https://doi.org/10.1007/s40435-015-0205-y

Harvard

Hamdache, A., Saadi, S. and Elmouki, I. (2016) 'Nominal and neighboring-optimal control approaches to the adoptive immunotherapy for cancer', International Journal of Dynamics and Control. doi: 10.1007/s40435-015-0205-y.

IEEE

A. Hamdache, S. Saadi, and I. Elmouki, "Nominal and neighboring-optimal control approaches to the adoptive immunotherapy for cancer," International Journal of Dynamics and Control, 2016. doi: 10.1007/s40435-015-0205-y.

Vancouver

Hamdache A, Saadi S, Elmouki I. Nominal and neighboring-optimal control approaches to the adoptive immunotherapy for cancer. International Journal of Dynamics and Control. 2016. doi: 10.1007/s40435-015-0205-y.

MLA

Hamdache, Amine, et al.. "Nominal and neighboring-optimal control approaches to the adoptive immunotherapy for cancer." International Journal of Dynamics and Control, 2016. https://doi.org/10.1007/s40435-015-0205-y.

Chicago

Hamdache, A., Saadi, S., Elmouki, I.. "Nominal and neighboring-optimal control approaches to the adoptive immunotherapy for cancer." International Journal of Dynamics and Control (2016). https://doi.org/10.1007/s40435-015-0205-y.

BibTeX

@article{hamdache2016, title={Nominal and neighboring-optimal control approaches to the adoptive immunotherapy for cancer}, author={Hamdache, Amine and Saadi, Smahane and Elmouki, Ilias}, journal={International Journal of Dynamics and Control}, year={2016}, doi={10.1007/s40435-015-0205-y}, }