Case Study

GlideGo

GlideGo is an eScooter mobility platform that helps riders locate scooters, unlock vehicles, manage trips, make payments, and track ride activity.

United StatesUrban MobilityeScooter Platform
  • 5 MonthsDelivery Timeline
  • 7 SpecialistsProject Team
  • 10 IntegrationsConnected Interfaces
Project overview

Project Overview

GlideGo is an eScooter platform designed to make short distance urban travel easier to manage through a connected mobile experience. Riders can create profiles, locate nearby scooters, review vehicle details, unlock rides, monitor trip activity, and complete payments. Operations teams can manage scooters, monitor active rides, review rider accounts, track vehicle activity, and handle platform operations through an administrative interface. The product was built to connect vehicle availability, rider activity, trip management, payments, and operational oversight within one system. Abhineh Infotech supported product planning, interface design, application development, backend services, integrations, testing, and deployment.

Industry

Urban Mobility

Platform

eScooter Platform

Team Size

7

Project Idea

GlideGo was designed to create a simple scooter rental journey while giving operations teams practical tools for managing vehicles, riders, trips, and daily mobility activity.

Scooter rental requires several connected actions, from finding an available vehicle and reviewing its location to unlocking, riding, ending a trip, and completing payment. GlideGo needed to make these steps easy for riders while giving internal teams visibility into vehicle availability and active journeys.

Abhineh Infotech connected scooter discovery, vehicle unlocking, trip management, location services, payments, rider accounts, and operational controls through a unified platform architecture. This allowed rider activity and vehicle information to move consistently between mobile interfaces, backend services, and operational tools throughout each ride.

The product principle focused on clarity, speed, and confidence. Riders needed quick access to nearby scooters, clear trip information, and simple payment flows. Operations teams needed accurate vehicle and ride visibility. Focused screens and straightforward interactions kept the experience practical across the complete scooter journey.

Project idea

Challenges

GlideGo served riders and operations teams with different responsibilities and access requirements. Riders needed fast access to nearby scooters and simple ride controls, while operations teams required broader visibility into vehicles, accounts, active rides, payments, and platform activity.

Scooter platforms generate constantly changing information across vehicle locations, availability, battery levels, ride sessions, rider accounts, payment records, and trip statuses. The system needed structured data handling so updates remained consistent across rider interfaces and operational tools.

Vehicle availability and ride activity can change rapidly across busy locations and high demand periods. GlideGo required responsive APIs, efficient location handling, real time trip updates, and scalable infrastructure to keep scooter discovery, unlocking, ride monitoring, and payment workflows reliable.

Project challenges

Project Milestones We Achieved

MilestoneTasksTimelineResponsible
Discovery and PlanningMapped rider journeys, scooter workflows, vehicle requirements, location services, payment needs, operational controls, integrations, and technical architecture.Month 1Product and Engineering Team
UI/UX DesignDesigned scooter discovery, vehicle details, unlocking, trip tracking, payment, account, and operational interfaces for mobile users.Month 2UI UX Design Team
Core DevelopmentBuilt rider accounts, scooter services, trip sessions, vehicle controls, payment workflows, location features, APIs, and dashboard foundations.Month 3Application Development Team
Integrations and TestingConnected mapping, payment, location, notification, and vehicle services while validating ride and operational workflows.Month 4Integration and QA Team
Launch and OptimizationPrepared production infrastructure, completed final validation, monitored ride activity, resolved issues, and refined scooter rental journeys.Month 5Engineering and Delivery Team

Project Features

GlideGo connects scooter discovery, vehicle access, ride management, location services, payments, and operational controls in one focused eScooter mobility platform.

  • Rider Signup and Profile

    Riders can create accounts, manage personal information, and maintain payment and ride preferences through their profile.

  • Scooter Discovery

    Riders can locate nearby scooters, review availability, and access relevant vehicle information before starting a ride.

  • Scooter Unlocking

    Riders can select an available scooter and begin a ride through a streamlined vehicle access workflow.

  • Ride Tracking

    Active riders can monitor trip duration, ride status, location information, and relevant journey details during each session.

  • Payments and Ride History

    Riders can complete ride payments and review previous trips, charges, and transaction information from their account.

  • Fleet Operations Dashboard

    Operations teams can monitor scooters, rider activity, active rides, vehicle status, payments, and platform operations.

Project features

Results

GlideGo launched as a connected eScooter platform covering rider accounts, scooter discovery, vehicle access, ride sessions, location services, payments, ride history, and operational management. The delivered product brought key mobility workflows into one structured environment.

Centralised fleet tools gave operations teams clearer visibility into scooter availability, active rides, vehicle activity, rider accounts, and payment information. This helped create more consistent workflows for monitoring vehicles and managing routine platform activity.

Riders gained a more organised experience from finding a nearby scooter through unlocking, riding, completing payment, and reviewing trip history. Clear vehicle information and visible ride status helped users understand each stage without unnecessary navigation.

The platform established a practical foundation for continued mobility expansion. Its architecture can support additional scooter services, fleet controls, pricing models, ride plans, location capabilities, payment options, and operational reporting as GlideGo evolves.

Project results

Development Process

Explore

Discover
  • Rider Journey Mapping
  • Mobility Research
  • Requirement Analysis
Design
  • Interface Planning
  • Mobile UX Design
  • Flow Validation

Implement

Develop
  • Mobile Development
  • Backend Development
  • API Development
Integrate
  • Mapping Services
  • Payment Services
  • Vehicle Services

Execute

Validate
  • Ride Testing
  • Load Testing
  • Security Review
Launch
  • Production Setup
  • Fleet Monitoring
  • Journey Optimization

Typography & colors

Plus Jakarta Sans

ABCDEFGHIJKLMNOPQRSTUVWXYZ

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Plus Jakarta Sans fits GlideGo because scooter interfaces require users to quickly read vehicle availability, distance, ride duration, pricing, location details, and trip status. Its clean letterforms support readable mobile screens, map information, ride cards, payment details, and operational dashboards while maintaining clear visual hierarchy.

Primary
#DB2777

Secondary
#F472B6

Tertiary Color
#FCE7F3

Icons Color
#64748B

Text Color
#0F172A

Background Color
#FFFFFF

App Visuals

9:41

GlideGo

52 nearby

9:41

Map

Nearby

Embarcadero$0.38/min
FiDi95%
Pier 390.4 mi
9:41

Trip

Riding

Time11:05
Cost$4.20
Battery70%
LiveYes
9:41

Fleet

Monitor

15

Rides

Open
9:41

Alerts

Ride notices

Trips
Payments
Maintenance

Tech Stack

Kotlin supported the Android rider application, while Swift powered the iOS experience. Go handled backend services for riders, vehicles, trips, and payments. PostgreSQL managed structured account and ride data, while Google Maps Platform supported location and mapping capabilities. Firebase supported notifications, analytics, and application monitoring across the GlideGo ecosystem.

  • Kotlin
  • Swift
  • Go
  • PostgreSQL
  • Google Maps Platform
  • Firebase

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