Home Projects City Rush: Taxi Driver
Game Development Android (Google Play Store) 2026

City Rush: Taxi Driver

A 3D mobile taxi simulation game developed with Unity, featuring realistic vehicle physics, dynamic city traffic, pedestrian AI, and day/night lighting cycles.

Project Overview

City Rush: Taxi Driver is an immersive 3D mobile taxi driving and simulation game engineered with the Unity engine and C#, fully optimized for Android devices.

Players take on the role of a city taxi driver: picking up highlighted passengers, following intuitive navigation markers to their target buildings safely, and earning coins for successful rides. Navigating dynamic city traffic without flipping the vehicle or colliding with pedestrians is essential to keeping the ride going.

The game features physics-driven Rigidbody car controls, an intelligent pedestrian & traffic NPC system, an atmospheric day/night lighting cycle with automatic street lamps, integrated Google AdMob monetization (banner & rewarded ads), and smooth frame rates tailored for mobile hardware.

Key Features

Realistic Taxi Vehicle Physics: Rigidbody-based smooth physics engine with responsive acceleration, braking, and steering controls.

Dynamic City & NPC Pedestrian AI: Active pedestrian pathways, traffic behavior trees, and responsive urban environment.

Passenger Mission System: Intuitive pick-up and delivery mechanics with target waypoints and coin-earning reward loops.

Day & Night Lighting System: Atmospheric lighting transition with automatic street lamps and vehicle headlights turning on at dusk.

Collision & Game Over Mechanics: Precision vehicle flip detection and pedestrian collision safeguards ensuring challenging gameplay.

Mobile Optimized & AdMob: High-performance rendering tailored for Android devices with integrated Google AdMob banner and rewarded ads.

City Rush: Taxi Driver on Google Play!

A 3D mobile taxi simulation game developed with Unity, featuring realistic vehicle physics, dynamic city traffic, pedestrian AI, and day/night lighting cycles.