WANG Huiji, 1, KE Deping, et al. Rapid Calculation of Locational Marginal Carbon Intensity and Carbon Emission Volatility Assessment for Power Systems[J]. 2025, 49(11): 4649-4658.
DOI:
WANG Huiji, 1, KE Deping, et al. Rapid Calculation of Locational Marginal Carbon Intensity and Carbon Emission Volatility Assessment for Power Systems[J]. 2025, 49(11): 4649-4658. DOI: 10.13335/j.1000-3673.pst.2024.1889.
Rapid Calculation of Locational Marginal Carbon Intensity and Carbon Emission Volatility Assessment for Power Systems
This paper delved into in-depth modeling and analysis of locational marginal carbon intensity (LMCI) and developed a comprehensive set of indicators to assess carbon emission volatility from multiple perspectives. Firstly
starting from the locational marginal price and considering the characteristics of generator carbon emission intensity with load rate
a time-flexible definition of the LMCI was proposed along with corresponding fast computation methods. Subsequently
to explore the low-carbon driving force of the LMCI within the context of electricity and carbon markets
a bi-level low-carbon economic dispatch model based on the LMCI for transmission system operators and load aggregators was proposed. Then
three distinct indicators were introduced to capture carbon emission volatility from temporal
spatial
and market perspectives: locational marginal carbon intensity consistency probability
and producer carbon benefit volatility index. These depict the carbon emission volatility of each time interval
node
and system. Finally
an example analysis was carried out based on IEEE-30
IEEE-57
and IEEE-118 node systems to explore the characteristics of the LMCI and its effect on low carbonization and verify the effectiveness of the indicator system proposed in this paper.