Title :
A mathematical formulation for low carbon electricity planning in the presence of technology and policy interventions
Author :
Amrutha, A.A. ; Mathirajan, M. ; Balachandra, P.
Author_Institution :
Dept. of Manage. Studies, Indian Inst. of Sci., Bangalore, India
Abstract :
To address climate change and resource related constraints, there is a need for integrating Renewable Energy (RE) along with conventional non-renewable sources to achieve a low carbon electricity system. But in many instances, there is insufficient renewable energy capacity installed in the system. For optimally matching the supply-demand in an electricity utility with numerous supply-side management (SSM) alternatives of electricity generation, we explore various RE technology interventions along with RPO (Renewable Purchase Obligation) and REC (Renewable Energy Certificate) policy interventions. For solving this problem, a Linear Programming (LP) model to obtain an optimal mix of supply, and minimum cost and emission is developed. A LINGO set code is developed to generate the LP model for any given data. The proposed model is validated using the data obtained from Karnataka Electricity System.
Keywords :
climate mitigation; electric power generation; electricity supply industry; linear programming; power system planning; renewable energy sources; supply and demand; Karnataka electricity system; LINGO set code; climate change; electricity generation; linear programming; low carbon electricity planning; policy intervention; renewable energy capacity; renewable energy certificate; renewable purchase obligation; resource related constraint; supply-demand; supply-side management; technology intervention; Biomass; Data models; Electricity; Equations; Mathematical model; Planning; Renewable energy; linear programming; low carbon electricity planning; renewable electricity shortage;
Conference_Titel :
Industrial Engineering and Engineering Management (IEEM), 2014 IEEE International Conference on
DOI :
10.1109/IEEM.2014.7058711