Market & Network Intelligence
Decide where to grow, invest, locate, serve and allocate capacity using customers, demand, competition, risk and access in geographic context.
See this solution family80 complete solution journeys
Mappls connects customer context, industry expertise, departmental priorities and real-world technology into complete, deployable solutions with a clear business case.
Solution families
Each family brings together customer problems, departments, outcomes, technologies, applications and detailed solution journeys around a shared operating need.
Decide where to grow, invest, locate, serve and allocate capacity using customers, demand, competition, risk and access in geographic context.
See this solution familyMake every customer, property, outlet, order and service location discoverable, valid, serviceable and useful across digital and physical journeys.
See this solution familyBuild embedded, connected, electric, assisted and multimodal mobility experiences using map, traffic, route, road and vehicle intelligence.
See this solution familyPlan and control vehicles, drivers, orders, loads, routes, hubs, ETAs, proof, condition and cost from origin to destination.
See this solution familyAssign, route, prove and improve sales, service, inspection, collection, maintenance and programme work performed in the field.
See this solution familyCreate a governed living model of land, networks, buildings, infrastructure and operational assets connected to imagery, sensors, work and decisions.
See this solution familyConnect vehicles, equipment, sensors and remote assets to live condition, alerts, workflows, analytics and lifecycle control.
See this solution familyDetect, locate, understand and respond to incidents, unsafe behaviour, hazards and strategic threats with coordinated evidence-led action.
See this solution familyOperate public assets, property, land, addresses, citizen requests, programmes and field delivery through accountable place-based systems.
See this solution familyUse governed map, place, route, traffic, imagery, spatial model, SDK and API capabilities to build differentiated digital products and agents.
See this solution familySolution finder
Every solution is connected to industries, customer segments, business functions, products, applications and detailed keywords, with useful alternatives whenever a highly specific combination has no exact match.
Customer context, department, outcome and technology are connected across every solution.
Showing 47 of 80 complete solution journeys
Legacy cadastral maps, boundary uncertainty and disconnected ownership/asset records create disputes, encroachment and planning delays.
Planning, approvals, assets and projects are managed in disconnected layers, limiting scenario analysis, coordination and citizen service.
Video, sensors, incidents and field units are fragmented, so operators lack a common operational picture and response accountability.
Caller location uncertainty, suboptimal dispatch and weak fleet visibility increase response time and make SLA control difficult.
Manual alarms, fragmented resource databases and non-optimised dispatch slow response and limit preparedness for high-risk premises.
Limited fleet visibility, weak schedule adherence, safety incidents and poor passenger/parent information reduce utilisation and trust.
Vehicle, route, temperature and delivery exceptions are visible too late, causing leakage, SLA failures and high control-room effort.
Inspection evidence, condition history and maintenance priorities are fragmented, making risk-based intervention and audit difficult.
Asset location, connectivity, drawings and maintenance records are inconsistent, raising outage, safety, planning and field-productivity risk.
Hazard, exposure, asset and response data are fragmented, limiting preparedness, prioritisation and rapid situational awareness.
Illegal extraction/transport, uncertain lease boundaries and disconnected permit, vehicle and imagery data cause revenue leakage and weak enforcement.
Mission data, terrain, imagery, sensors and operational workflows need secure, sovereign, offline-capable geospatial integration.
Airside/landside assets, projects, drawings, incidents and maintenance are managed across systems without a shared spatial operational layer.
Large distributed property portfolios lack verified boundaries, current occupancy/lease data and transparent workflows, enabling encroachment and revenue leakage.
OEMs need India-optimised navigation, connected services, EV routing and ADAS-grade map content with production lifecycle support.
Teams depend on fragmented or costly global location services and inconsistent India address/map quality, slowing product and operations.
OEMs need differentiated, localised navigation that remains accurate across vehicle life while meeting SOP, cost and quality gates.
Vehicle, app and cloud journeys are fragmented, limiting remote services, safety, ownership engagement and monetisation.
Camera/sensor-only systems lack horizon context and consistent road intelligence, while fleets and agencies need actionable risk maps.
EV drivers and fleets face charging uncertainty, range anxiety and fragmented charger/vehicle data.
Automotive programmes require traceable map coverage, update cadence and defect closure across models and regions.
Poor pickup precision, dispatch, ETA and multimodal planning create cancellations, idle time and weak marketplace liquidity.
Manual planning and disconnected transporter, order and route data inflate kilometres, empty runs, detention and planning effort.
Fleet location, utilisation, trip, delay and exception data are fragmented across devices and operators.
Unsafe driving and incidents are reviewed after the fact, with limited context or coaching closure.
Non-powered and mobile assets are under-utilised, misplaced or maintained reactively because location and state are not visible.
Temperature, fuel, chamber and equipment conditions are not continuously evidenced, creating loss, fraud and compliance exposure.
Motor risk and claims decisions lack continuous driving, road and location context, while assistance dispatch is slow.
Network, fiber, tower, customer and field-work data are split across systems, slowing rollout and repair while hiding coverage gaps.
Field teams, doctor/chemist coverage and healthcare distribution are planned with incomplete location and potential data.
Plants and yards lack a current spatial operational layer linking assets, vehicles, people, incidents and workflows.
High-volume material movements suffer from dispatch delay, truck queues, route risk, turnaround variability and weak delivery evidence.
Berth, vessel, yard, rail, truck and asset information is fragmented, constraining common situational awareness and throughput decisions.
Visitors and staff lose time in complex venues, while indoor assets and services remain disconnected from digital journeys.
Assets, corridors and sites lack current, measurable ground truth, making inspection, planning and change detection slow and costly.
Users and operators need intuitive spatial guidance and context that conventional 2D interfaces cannot deliver.
OEMs, distributors and solution providers need certified tracking/sensor hardware and a scalable platform without building the full stack.
Fleet toll spend, tag status, route cost and compliance are reconciled manually, obscuring leakage and lane economics.
Organisations cannot consistently connect route, fleet, facility and land-use decisions to auditable emissions and climate outcomes.
Institutions lack integrated campus maps, visitor/asset workflows and safe, transparent student/staff transportation.
Customer and lead locations must be assigned to the right serviceable branch and product while respecting branch catchments, approved villages, exclusions, risk zones, distance and changing business rules.
Service tickets, technicians, assets, attendance, parts, routes, task proof and productivity are split across systems, leaving managers with weak control and field users with avoidable travel and manual steps.
Vehicle requests, material requirements, resource schedules, compliance checks, trip execution, delays, documents, cost allocation and closure verification are handled across disconnected tools and stakeholder groups.
Drivers on high-exposure routes need more than shortest-path navigation: hazards, road conditions, restricted stretches, safe parking and emergency facilities must shape the route and active guidance.
Public maps do not contain changing internal roads, plots, buildings, departments, parking, restrictions, assets, assembly points and shuttle operations required to navigate complex private sites.
Variable station demand, battery state and vehicle movement create queues, low utilization, poor battery turn ratios and inefficient redistribution routes.
Organizations need to plan employee access and commute, operate routes and shuttles, monitor vehicles and proactively reduce driver and passenger safety risks.
Your outcome, powered by Mappls
Describe the current workflow, systems, users and outcome. Mappls solutions intentionally combine data, products, platforms, APIs, applications and integration when the customer problem requires it.