- Omotayo Salawu1, Azeez Oyelami Ganiyu2, Kadijat Funke Olagbenro3, Rafiu Adesina Ganiyu4 and Elijah Olusayo Omidiora5
- DOI: 10.5281/zenodo.21459768
- GAS Journal of Engineering and Technology (GASJET)
Automobile
maintenance service centres operate as complex discrete-event systems in which
multiple maintenance activities are executed concurrently while competing for
limited service resources. Inefficient scheduling, prolonged vehicle waiting
time, queue congestion, and poor resource utilization continue to reduce
service efficiency and customer satisfaction. Although Hierarchical Timed
Coloured Petri Nets (HTCPNs) have demonstrated considerable capability for
modelling concurrent systems, limited studies have investigated their
application to the simulation and performance evaluation of automobile
maintenance service centres involving both engine servicing and running
repairs. This study presents the simulation of an HTCPN model developed for an
automobile maintenance service centre using DDD Motors Service Centre as a case
study. Operational data comprising vehicle arrivals, service commencement
times, service completion times, and maintenance categories were collected over
one month and analysed using the ARENA Input Analyzer to determine stochastic
input distributions. The HTCPN model was implemented in CPN Tools and simulated
under five operational scenarios representing different resource allocation
policies. System performance was evaluated using six performance indicators:
Vehicle Average Waiting Time (VAWT), Vehicle Average Service Time (VAST),
Vehicle Average Time of Stay (VAST/TOS), Vehicle Average Queue Number (VAQN),
Average Serviced Vehicles (ASV), and Average Leftover Vehicles (ALOV). The
simulation results indicate progressive improvement in operational performance
across the scenarios. Scenario 5 produced the lowest VAWT (4.02 min), VAST
(122.17 min), VAST/TOS (126.19 min), VAQN (10.22), and ALOV (1), while
increasing ASV to 41 vehicles. Statistical validation using an independent-samples
t-test revealed no significant difference between simulated and observed
serviced vehicles (p = 0.618), confirming the validity of the simulation
model. The study demonstrates that HTCPN simulation provides an effective
decision-support framework for evaluating alternative operational policies and
improving service efficiency in automobile maintenance service centres.
Keywords: Automobile maintenance, Hierarchical Timed Coloured Petri Nets, Simulation, CPN Tools, Service operations, Discrete-event systems. Scenario Analysis.
