主管:中国科学院
主办:中国优选法统筹法与经济数学研究会
   中国科学院科技战略咨询研究院

Chinese Journal of Management Science ›› 2014, Vol. 22 ›› Issue (1): 104-109.

• Articles • Previous Articles     Next Articles

Research on Production-Distribution Collaborative Planning for Distributed Decision Environment

JIANG Guo-rui, LI Qiang, HE Xi-jun   

  1. The Economics and Management School, Beijing University of Technology, Beijing 100124, China
  • Received:2011-09-17 Revised:2013-04-10 Online:2014-01-20 Published:2014-01-20

Abstract: In the production-distribution system with distributed decision environment, because of the ambiguous information among enterprises,the supply chain production-distribution collaborative planning process often leads to conflicts. These conflicts are not conducive to the optimal solution.At present, the supply chain production distribution collaborative planning under asymmetric information conditions has become hot problem. The multi-level supply chain production distribution collaborative planning based on negotiation mode is studied in this paper under the non-symmetric information. A satisfactory solution method for solving collaborative planning is designed based on the theory of multi level programming planning and interactive negotiation. The supply chain collaborative planning collaborative planning problem can be seen as a multi level programming problem. The concept of collaborative planning satisfactory solution is described and the negotiation algorithm is designed for solving the satisfactory solution. The validation of the model and the process are illustrated by using an simulation example. The results show that the model and the negotiation approach could effectively solve the conflict problem caused by asymmetric information in the process of supply chain production distribution collaborative planning. This research is helpful to extend the production distribution collaborative planning to the general supply chain structure, and it can also improve the collaborative efficiency and management level in supply chain under asymmetric information conditions.

Key words: supply chain collaborative planning, production-distribution collaborative, multi-level programming, interactive negotiation, satisfactory solution

CLC Number: