Business Model CanvasCollapse all
The Business Model Canvas reveals a B2G (Business-to-Government) model that leverages high-resolution geospatial data to shift urban planning from general policy to street-level health interventions. The viability depends on integrating environmental data with municipal zoning authority to create tangible 'Clean Air Zones'.
Key Partners4 Environmental Data Providers Satellite data providers and sensor networks providing the raw NO2 and pollutant concentration metrics. UN-Habitat Strategic partner for scaling the tool to other developing urban centers and providing global health benchmarks. Municipal Health Departments Partners in Jakarta who provide pediatric asthma admission data to validate the tool's hotspot accuracy. Urban Planning Agencies Government bodies responsible for traffic routing and zoning laws in Jakarta. Key Activities3 Geospatial Modeling Developing and refining the 1km resolution mapping algorithm to correlate NO2 levels with pediatric asthma risk. Hotspot Identification Analyzing urban layouts to pinpoint specific intersections or school zones with the highest risk profiles. Policy Translation Converting technical pollutant data into actionable zoning recommendations for city officials. Key Resources3 Proprietary Mapping Algorithm The software logic that translates pollutant concentration into a risk map for children under 5. High-Resolution Geospatial Data Access to 1km resolution environmental datasets and urban infrastructure maps. Public Health Expertise Specialists in pediatric respiratory health to ensure the clinical validity of the risk markers. Value Propositions3 Precision Urban Intervention Enables city officials to move from national-level policy to street-level 'Clean Air Zones' near schools. Targeted Health Resource Allocation Allows municipal governments to prioritize emission-control infrastructure where it will save the most pediatric lives. Evidence-Based Zoning Provides urban planners with a quantitative, research-backed justification for relocating high-traffic routes. Customer Relationships2 Strategic Government Partnerships Long-term collaborative relationships with municipal governments to iterate the tool based on city-specific results. Consultative Implementation Working closely with urban planners to ensure the tool's outputs are compatible with existing zoning software. Channels3 Direct B2G Sales Direct engagement with the Municipal Government of Jakarta and city planning departments. Intergovernmental Organizations Distribution through UN-Habitat to reach other high-risk urban areas in developing countries. Public Health Forums Presenting findings to pediatricians and health boards to create bottom-up demand for the tool. Customer Segments3 Municipal Government of Jakarta The primary decision-makers responsible for city zoning and traffic management. UN-Habitat Global agency seeking scalable urban health solutions for developing cities. Urban Planning Departments Technical staff tasked with designing emission-control zones and school-safe routes. Cost Structure3 Data Acquisition Costs Fees for high-resolution satellite imagery and environmental sensor data feeds. Software Development Costs associated with building and maintaining the geospatial analytics engine. Validation Research Costs for correlating tool predictions with actual pediatric clinic data in Jakarta. Revenue Streams3 Annual Licensing Fee A recurring SaaS-style fee paid by the municipal government for access to the live mapping tool. Implementation Consulting One-time fees for helping city planners design and deploy specific 'Clean Air Zones' based on tool data. Grant Funding Public health and urban development grants from organizations like the WHO or UN. The idea has clearly defined beneficiaries and a specific value proposition, making it ready to map out the delivery and capture of value. · Generated 2026-09-05 by cavi/gemma4-31b-it-awq-4bit-32kAI-generated