Title :
Dynamic Interactions of TGC and Electricity Markets to Promote Wind Capacity Investment
Author :
Hasani-Marzooni, Masoud ; Hosseini, Seyed Hamid
Author_Institution :
Dept. of Electr. Eng., Sharif Univ. of Technol., Tehran, Iran
fDate :
3/1/2012 12:00:00 AM
Abstract :
This paper proposes a time simulation model for long-term wind capacity investment decisions in the presence of electricity market and tradable green certificate (TGC) market. Investment decisions and wind capacity development are fundamentally based on incentives gained from both these markets. In TGC market, the tradable certificates are issued to renewable generation companies for each megawatt-hour of electricity generation. Distribution companies are obligated to support fraction of their electricity consumptions from renewable sources. The dynamics of prices in both markets are simulated in a system dynamics model to trace the dynamics of wind capacity investment. Such a decision model enables both the wind generation investors and the regulators to gain perfect insight into finding possible consequences of different decisions that they should make under different policies and markets conditions particularly in the preliminary design of TGC market. The impacts of regulatory policies, trading strategies of players, and uncertainties in both markets are examined in a case study.
Keywords :
decision theory; investment; power generation economics; power markets; pricing; wind power plants; TGC dynamic interactions; decision model; electricity consumptions; electricity generation; electricity markets; regulatory policy; renewable sources; system dynamics model; time simulation model; tradable green certificate market; wind capacity investment; wind generation investors; Electricity; Electricity supply industry; Green products; Investments; Mathematical model; Wind power generation; Wind speed; Electricity market; investment decision; system dynamics; tradable green certificate (TGC) market; trading strategies;
Journal_Title :
Systems Journal, IEEE
DOI :
10.1109/JSYST.2011.2162891