Evaluating the effectiveness of Australia's Small-scale Renewable Energy Scheme for rooftop solar

A-Tier
Journal: Energy Economics
Year: 2019
Volume: 84
Issue: C

Score contribution per author:

1.341 = (α=2.01 / 3 authors) × 2.0x A-tier

α: calibrated so average coauthorship-adjusted count equals average raw count

Abstract

Australia has among the highest rates of small-scale solar photovoltaic adoption in the world, with substantial geographical variation in uptake. Using postcode-level data up to December 2018, we quantify the impact of Australia's spatially-differentiated Small-scale Renewable Energy Scheme on solar uptake. We use spatial autoregressive models and other approaches such as a regression discontinuity design. The results indicate that postcodes receiving a higher subsidy factor have significantly more small-scale solar installations, after controlling for solar exposure and spatial patterns in the data. The subsidy elasticity of small-scale solar capacity installations during 2018 was around 1.2. We use this estimate to calculate that an increase in the subsidy flowing to new installations would be able to reduce carbon dioxide emissions at a subsidy cost of around US$36 per tonne, depending on assumptions.

Technical Details

RePEc Handle
repec:eee:eneeco:v:84:y:2019:i:c:s0140988319302567
Journal Field
Energy
Author Count
3
Added to Database
2026-01-24