Skip to main navigation
Skip to search
Skip to main content
Hong Kong Baptist University Home
Help & FAQ
Link opens in a new tab
Search content at Hong Kong Baptist University
Home
Scholars
Departments / Units
Research Output
Projects / Grants
Prizes / Awards
Activities
Press/Media
Student theses
Datasets
Artificial immune algorithm for multi-depot vehicle scheduling problems
Zhongyi Wu
*
,
Donggen Wang
, Linyuan Xia
, Xiaoling Chen
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Conference article
›
peer-review
1
Citation (Scopus)
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Artificial immune algorithm for multi-depot vehicle scheduling problems'. Together they form a unique fingerprint.
Sort by:
Weight
Alphabetically
Keyphrases
MDVSP
100%
Artificial Immune System
100%
Vehicle Scheduling
100%
Multi-vehicle Scheduling
100%
Genetic Algorithm
20%
High Risk
20%
Search Algorithm
20%
Heuristic Method
20%
In(III)
20%
Vertebrates
20%
Supply Chain Management
20%
Local Optimum
20%
Immune System
20%
Polynomial Time
20%
Computation Time
20%
Decision Support System
20%
Time Consumption
20%
Total Distance
20%
Exact Algorithm
20%
Logistics Chain
20%
Depot
20%
Constraint Set
20%
Non-deterministic Polynomial
20%
Delivery Cost
20%
One-step Reaction
20%
Delivery Time
20%
Multiplex Structure
20%
Tabu Search
20%
Transportation Applications
20%
Algorithm Genetic
20%
Customer Assignment
20%
Two-stage Heuristic
20%
Cost Consumption
20%
Multi-depot Vehicle Routing Problem
20%
Computer Science
Scheduling Problem
100%
Artificial Immune System
100%
Immune Algorithm
100%
Experimental Result
33%
Genetic Algorithm
33%
Searching Algorithm
33%
Supply Chain
33%
Heuristic Method
33%
Polynomial Time
33%
Computational Time
33%
Decision Support System
33%
Time Consumption
33%
Total Distance
33%
Exact Algorithm
33%
Tabu Search Algorithm
33%
Engineering
Search Algorithm
100%
Experimental Result
50%
Optimality
50%
Genetic Algorithm
50%
Computational Time
50%
Support System
50%
Polynomial Time
50%
Management Chain
50%
Local Optimum
50%
Exact Algorithm
50%
Mathematics
Search Algorithm
100%
Polynomial
50%
Minimizes
50%
Genetic Algorithm
50%
Optimality
50%
Polynomial Time
50%
Local Optimum
50%
Heuristic Method
50%