Proceedings of the 2018 International Symposium on Humanities and Social Sciences, Management and Education Engineering (HSSMEE 2018)

Dual-channel Supply Chain Integration Model Based on Double-helix Stability Structure of DNA Molecules

Authors
Hui Ye, Mei-e Xie, Xiaolan Hu
Corresponding Author
Hui Ye
Available Online September 2018.
DOI
10.2991/hssmee-18.2018.83How to use a DOI?
Keywords
Dual-channel supply chain; Integration; DNA molecule.
Abstract

The purpose of supply chain integration is to improve the operating efficiency of supply chain, enhance the competitive advantage of each node enterprise, and constantly provide higher value for customers. Based on the basic theory of dual-channel supply chain operation, this paper constructs a dual-channel supply chain integration model by using the structural characteristics of DNA molecules and the relationship between core elements in the process of dual-channel integration. It aims to explore the process of channel value creation, weaken the conflict between channels, achieve synergistic effect, and provide the basis for the decision of channel integration.

Copyright
© 2018, the Authors. Published by Atlantis Press.
Open Access
This is an open access article distributed under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).

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Volume Title
Proceedings of the 2018 International Symposium on Humanities and Social Sciences, Management and Education Engineering (HSSMEE 2018)
Series
Advances in Social Science, Education and Humanities Research
Publication Date
September 2018
ISBN
10.2991/hssmee-18.2018.83
ISSN
2352-5398
DOI
10.2991/hssmee-18.2018.83How to use a DOI?
Copyright
© 2018, the Authors. Published by Atlantis Press.
Open Access
This is an open access article distributed under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).

Cite this article

TY  - CONF
AU  - Hui Ye
AU  - Mei-e Xie
AU  - Xiaolan Hu
PY  - 2018/09
DA  - 2018/09
TI  - Dual-channel Supply Chain Integration Model Based on Double-helix Stability Structure of DNA Molecules
BT  - Proceedings of the 2018 International Symposium on Humanities and Social Sciences, Management and Education Engineering (HSSMEE 2018)
PB  - Atlantis Press
SP  - 497
EP  - 501
SN  - 2352-5398
UR  - https://doi.org/10.2991/hssmee-18.2018.83
DO  - 10.2991/hssmee-18.2018.83
ID  - Ye2018/09
ER  -