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ESG

www.aavolta.com

ENERGY

Clean Electricity

AGRICULTURE

Healthy Crops

AQUACULTURE

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KEY IMPACT METRICS

Measurable Sustainability Metrics

AAVOLTA integrates clean energy, precision agriculture, and smart aquaculture into a single, unified platform. This hybrid approach is designed to address land-use constraints, enabling efficient, simultaneous resource utilization without creating conflicts of interest between the energy and food sectors.

Through this cross-sector optimization, the platform not only boosts productivity but also delivers measurable environmental impact. Consequently, AAVOLTA generates high-value (bankable) ESG metrics ready to meet investment standards in the climate technology sector.

3.0×

Land Productivity Factor
Triple output streams (electricity, crops, fish) stacked on a single spatial footprint.

0.064 m

Carbon Stock LiDAR RMSE
Precision carbon stock estimation combining Terrestrial & Airborne LiDAR (F-score 0.98).

307 kWp

Clean PV Generation
Zero-emission solar generation supported by 200 kWh LFP BESS microgrid.

48,000

Fish Seed Capacity / Cycle
Smart aquavoltaic breeding for Tilapia paired with 120 organic crop planters.

ESG FRAMEWORK

The Three Pillars of AAVOLTA Sustainability

A holistic approach to Environmental stewardship, Social empowerment, and transparent Governance.

Environmental Stewardship

Carbon Stock Monitoring: LiDAR-based AGB tree segmentation for verified reporting.
Microclimate Optimization: Solar shading reduces soil water evaporation and plant thermal stress.
Zero-Diesel Microgrid: PV + BESS grid-forming control eliminates rural diesel generator emissions.

Social & Community Impact

Resolving Land Conflict: Replaces land displacement with joint farming & solar lease models.
Local Farmer Empowerment: Skilling smallholder farmers ("Petani Itu Keren") in smart organic farming.
Vocational Training: Certified PV installation & maintenance short courses with BSN & BRIN.

Transparent Governance

Bankable Data Layer: Real-time IoT dashboards tracking kWh sales, DO levels, and revenue splits.
Structured Profit-Sharing: Fair 60/40 or 70/30 net margin distribution for land operators.
Academic Rigor: Governance anchored in ITS Surabaya and NTU Singapore INSPIRASI consortium.
GLOBAL GOALS

Alignment with UN Sustainable Development Goals

Direct contributions to the United Nations 2030 Agenda for Sustainable Development.

SDG 2: Zero Hunger

Enhancing food productivity by utilizing solar undercanopy space for shade-adapted crops (chili, spinach, paprika) and smart Tilapia aquaculture breeding.

SDG 7: Affordable & Clean Energy

Deploying hybrid solar PV and BESS microgrid systems to provide reliable, low-cost clean electricity for industrial estates, rural communities, and agricultural loads.

SDG 13: Climate Action

Supporting Indonesia’s Net Zero Emission (NZE) 2060 roadmap through scalable agrivoltaic systems that optimize land utilization and lower carbon intensity.

CASE STUDY

Purwakarta Ground-Mounted PV Trade-Off Analysis

Comparative economic & social evaluation of conventional ground-mounted solar vs. AAVOLTA AgriAquaVoltaic integration.

Conventional PV (100 MW / 80 ha)
  • Land Trade-Off: Occupies ~80 hectares of fertile arable land in Purwakarta, West Java.
  • Forgone Agricultural Revenue: Losses of ~IDR 5–11 Billion/year in rice production.
  • Social Impact: High risk of community opposition, land displacement, and zero local food output.
AAVOLTA Integrated Model
  • 3-in-1 Platform: Retains 100% solar electricity generation while adding crop & aquaculture layers.
  • Restored Revenue: Recovers crop & fish gross margins while preserving land productivity by 3.0×.
  • Social Impact: Local farmer employment, shared upside margins, and enhanced community acceptance.