6533b831fe1ef96bd12999b9

RESEARCH PRODUCT

A webGIS-based system for real time shelf life prediction

Rosa MicaleGiada La ScaliaMario EneaR. Sciortino

subject

0301 basic medicineTruckEngineeringWeb GISMathematical modelOperations researchbusiness.industrySupply chain030106 microbiologyReal-time computingForestry04 agricultural and veterinary sciencesHorticultureCommunications systemShelf life040401 food scienceAutomationComputer Science Applications03 medical and health sciences0404 agricultural biotechnologyAssisted GPSSettore ING-IND/17 - Impianti Industriali MeccaniciGlobal Positioning SystembusinessAgronomy and Crop Science

description

Technologies to acquire and monitor changes in the product shelf life were described.Four different SL predictive models were considered.A simulated transport using a prototype of Smart Logistic Unit was analysed.Real time shelf life prediction system was implemented in a webGIS platform. Shelf-life (SL) prediction and Least Shelf-life First Out (LSFO) stock strategy are important factors in perishable food supply chain in order to reduce quality and economic losses.In particular, distribution represents one of the main critical phases in logistic chain management and only the introduction of monitoring procedure can allow a reduction in food losses. Literature shows several mathematical models for analysing the changes in food quality using environmental/product parameters. However, these models can be very useful decision support tools only if the abovementioned parameters can be processed in real time.This paper focuses on technologies and applications to acquire and monitor changes in product shelf life using different SL predictive models. The paper includes a case study on a simulated transportation of strawberries, using a prototype of Smart Logistic Unit equipped with a GPS module for real time positioning of the truck, a 3G connection as communication system for remote quality supervision, and a shelf life prediction algorithm based on four different models and implemented on a webGIS platform.

10.1016/j.compag.2016.07.004http://hdl.handle.net/10447/191459