Dynamic vehicle path optimization method based on fuzzy rolling time domain control strategy
A technology of rolling time domain and control strategy, applied in the direction of instruments, data processing applications, forecasting, etc., can solve the problems of unable to coordinate planning of demand points, reduce delivery distance and overall waiting time of customers, etc.
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[0032] 1 Problem description and mathematical model
[0033] 1.1 Problem description
[0034] DVRP is to solve the problem that several dynamically changing customers (cities) are delivered by a fleet. Customers here are generally divided into two categories: early customers (early customers) and late customers (late customers). Early customers refer to customers that have been acquired before the start of the service time of the distribution center. Generally, they are customers that have not been processed in the last service time period; while late customers refer to the distribution center that continuously receives new customers during the service time. Or the change of demand information of early customers, and also called the change of demand of early customers as dynamic disturbance (Disturb).
[0035] DVRP in this paper can be expressed as: There is a distribution center v with a service time of [0-SystemTime] 0 , there are K vehicles C={c 1 ,c 2 ,...,c K}, to c...
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