Prop Connect Driver

Software Development

Prop Connect Driver is a mobile logistics application built specifically for frac sand drivers operating in remote and high-pressure environments. This app supports secure login, real-time location tracking, load status updates, and offline capabilities—empowering drivers to stay connected and efficient even in low-network zones.

I was responsible for building a streamlined driver interface using Flutter and Dart, focusing on quick-tap workflows and clarity across each load stage: Assigned → At Terminal → In Transit → Delivered. Firebase integration enabled real-time syncing, while Google Maps ensured live navigation and tracking. Offline-first functionality was a key priority, allowing drivers to manage their assignments and automatically sync when back online. This project significantly improved driver communication with supervisors, reduced missed updates, and allowed better oversight of load movements across the entire frac sand delivery cycle.

Location :

7 Lake Street,London

Client :

wpOceans

Architect :

Harry Johnson

Project Type :

Softwere Development

Duration :

6 Month

Completion :

15 Apr 2022

Share :

Web App, Marketing

My Work Process

This project demanded simplicity, speed, and offline reliability to meet the needs of on-road drivers in dynamic environments.

“Amazing looking theme and instantly turns your application into a great looking one. Really shows that pro_ fessionals built this theme up. Very happy with the way the theme looks .”

Robert -
Yellow Theme

My approach

Understanding that drivers need speed and clarity on the road, I prioritized a guided user interface with quick actions and minimal taps. Offline-first development ensured uninterrupted functionality during low coverage. I focused on creating a seamless workflow that covered the full delivery cycle while integrating secure login and sync mechanisms with Firebase. Real-time GPS updates and status tagging kept supervisors in the loop. The interface was stress-tested for clarity, especially in motion, to reduce driver distraction and promote task completion.

Goals

Results