Fleet Visibility Solutions

How IMIP Digitized Fleet Operations Across 7,000 Industrial Vehicles

Indonesia Morowali Industrial Park used a customized IOPGPS environment for visibility, private mapping, fuel monitoring, geofences, alerts, reporting, local infrastructure, and role-based administration across 7,000 industrial vehicles.

Metals, Mining, and Industrial ManufacturingCentral Sulawesi, Indonesia
IOPGPS mobile monitoring view used to support fleet visibility workflows

At a Glance

Customer
Indonesia Morowali Industrial Park (IMIP)
Group context
A Tsingshan Group industrial operation
Industry
Metals, Mining, and Industrial Manufacturing
Region
Central Sulawesi, Indonesia
Organization size
More than 90,000 employees at the industrial park
Devices
GS10G GPS terminal, Fuel-level sensor
Deployment scale
7,000 connected deployment vehicles
Deployment period
Phase 1: 2 months; Phase 2: 1 month
Disclosure
Public

Background

Operating Context

  • Indonesia Morowali Industrial Park is a major Tsingshan Group industrial operation in Central Sulawesi.
  • The broader park includes mining, processing, manufacturing, logistics, utilities, and employee transportation operations.
  • More than 10,000 engineering, logistics, and operating vehicles work across the broader park environment.

Challenges

What Needed to Improve

  • Limited fleet visibility across a large industrial operating environment.
  • Fuel theft, leakage, abnormal refueling, and fuel-use control requirements.
  • Public maps were not detailed enough for industrial-zone operations.
  • Unauthorized cross-zone movement, overtime operation, and unapproved vehicle use.
  • Need for local infrastructure, custom workflows, reports, and department permissions.

WanWay Solution

How IOPGPS Was Configured

GS10G GPS terminals and fuel-level sensors for connected industrial-vehicle operations.

Real-time monitoring with high-resolution aerial mapping for private industrial roads and operating zones.

Geofences, route controls, overspeed, offline, idling, fuel-leak, abnormal-refuel, congestion, and route-deviation alerts.

Fuel reports, local server deployment, role accounts, department permissions, web access, mobile access, API support, and customized industrial transport workflows.

Command-enabled operating controls were configured for compatible vehicles according to park operating policies and deployment requirements.

Implementation

From Scope to Deployment

  1. Reviewed vehicle groups, industrial zones, fuel-monitoring requirements, and local infrastructure needs.
  2. Configured private mapping, geofences, routes, account roles, and department permissions.
  3. Installed and connected GS10G GPS terminals and fuel-level sensors.
  4. Configured alerts, reports, local server infrastructure, and web/mobile workflows.
  5. Completed Phase 1 in two months and Phase 2 in one month.

Results

Reported Outcomes

7,000 connected vehicles

95% project-reported monitoring coverage

3 reported fuel-theft incidents identified

25% project-reported improvement in transport operating efficiency

35% project-reported decrease in vehicle violations and fault incidents

The customized IOPGPS fleet-management system solved the core challenges of dispatching a large industrial fleet, controlling fuel usage, and managing operating compliance.

Senior Director of Industrial Park Operations

Deployment Considerations

Scope and Configuration Notes

Sensor values, alarm behavior, reports, API access, and command-enabled workflows depend on device compatibility, local infrastructure, policy, permissions, and deployment configuration.

The project-reported metrics are outcomes from this specific deployment rather than default benchmarks for every fleet environment.

Frequently Asked Questions

What industrial fleet workflow did IOPGPS support?

IOPGPS supported visibility, private mapping, fuel monitoring, route controls, geofences, alerts, reports, local infrastructure, and role-based administration.

What devices and sensors were used?

The deployment used GS10G GPS terminals and fuel-level sensors.

Which results were reported?

The project reported 7,000 connected vehicles, 95% monitoring coverage, three fuel-theft incidents identified, 25% improved transport operating efficiency, and a 35% decrease in vehicle violations and fault incidents.

What affects industrial fleet deployment outcomes?

Outcomes depend on operating environment, device setup, data availability, local infrastructure, and deployment configuration.

Last updated July 24, 2026.