Renewable Market Routing Architecture

Capacity-Based Decision Flow Engine

This model structures renewable projects by capacity tier and activates technical, regulatory, and financial modules accordingly.

Prototype environment. Illustrative data.

It Defines

  • Segment classification logic
  • Routing thresholds
  • Activation rules for storage, SCADA, EMS
  • Incentive mapping by region
  • Risk evaluation layers

Used for

  • Tender preparation
  • Hybrid scaling strategies
  • Cross-segment project modeling
  • Regulatory planning
Prototype 02

Renewable Market System Routing Architecture

Capacity-Based Segment Classification & Decision Flow Engine

Capacity Tier System
Automatic routing based on capacity input
Residential
5–30 kWp
Commercial
30–500 kWp
Industrial
500 kWp – 5 MW
Utility-Scale
5 MW+

Residential

Market Segment
Avg Project Size
12 kW
ROI Range
7–10 years
Implementation
4–8 weeks
Complexity
Low
Decision Flow
1
Energy Potential Check
2
Roof Suitability Analysis
3
Incentive Eligibility
4
Financing Model
5
Installation Planning
Technical Specifications
Rooftop Installation
String Inverter
AC-Coupled Storage
Grid Parity Focus
Regulatory Layer
Feed-in Tariff
KfW Programs
Net Metering
Monitoring & Analytics Layer
Mobile Dashboard
Self-Consumption Track
Risk Evaluation
Grid Capacity RiskLow
Regulatory DelayLow
Tariff VolatilityMedium
Weather ImpactModeled

Commercial

Market Segment
Avg Project Size
180 kW
ROI Range
5–7 years
Implementation
8–16 weeks
Complexity
Medium
Decision Flow
1
Load Profile Analysis
2
Technical Feasibility
3
Grid Interaction Assessment
4
Financial ROI Model
5
Contracting
Technical Specifications
100–500 kW Installations
Hybrid Inverter
Peak Shaving Logic
EV Integration Ready
Regulatory Layer
EEG 2023
Tax Incentives
Carbon Credits
Monitoring & Analytics Layer
Energy KPI Monitoring
Peak Shaving Analytics
Risk Evaluation
Grid Capacity RiskLow
Regulatory DelayLow
Tariff VolatilityMedium
Weather ImpactModeled

Industrial

Market Segment
Avg Project Size
2.2 MW
ROI Range
4–6 years
Implementation
16–32 weeks
Complexity
High
Decision Flow
1
Energy Demand Forecast
2
Hybrid Architecture Design
3
Demand Response Integration
4
Risk Assessment
5
PPA / Financing Model
Technical Specifications
1–20 MW Installations
DC-Coupled Storage
20 kV Injection
SCADA Integration
Regulatory Layer
Energy Trading
Demand Response Contracts
Grid Stability Agreements
Monitoring & Analytics Layer
Load Forecast AI
Grid Tariff Optimization
Risk Evaluation
Grid Capacity RiskHigh
Regulatory DelayMedium
Tariff VolatilityMedium
Weather ImpactModeled

Utility-Scale

Market Segment
Avg Project Size
12 MW
ROI Range
6–9 years
Implementation
52+ weeks
Complexity
Very High
Decision Flow
1
Site Assessment
2
Grid Capacity Study
3
Regulatory Approval Workflow
4
EPC Planning
5
Financial Structuring
Technical Specifications
5–100 MW Solar Fields
Central Inverters
110 kV Grid Connection
Utility SCADA
Regulatory Layer
Tender Participation
National Subsidy Programs
Grid Code Compliance
Monitoring & Analytics Layer
Production Forecast
Curtailment Monitoring
Risk Evaluation
Grid Capacity RiskHigh
Regulatory DelayMedium
Tariff VolatilityMedium
Weather ImpactModeled
Cross-Segment Logic Layer
Shared Infrastructure Modules
Energy Storage
Battery + Hybrid Logic
EMS Integration
Unified Control Platform
Incentive Engine
API-driven Updates
Regulatory Layer
Geo-based Compliance
Cross-segment capabilities enable hybrid projects: Commercial → Industrial scaling, Industrial → Utility PPA models, Residential → Community Solar aggregation
Routing Engine Logic
Segment Classification
Capacity Threshold
Grid Connection Level
Regulatory Tier
Financial Modeling Framework
Dynamic Component Activation
System modules activate based on project size: storage integration at 100kW+, demand response at 500kW+, SCADA at MW-scale
API-Driven Incentive Updates
Real-time regulatory database sync ensures accurate subsidy calculation for EEG, KfW, DEWA programs across all segments
Geo-Based Compliance Mapping
Automatic regulatory requirement mapping by region: EU Taxonomy, national grid codes, local permitting workflows