Ye Tian, Zhengshuo Li, Wenchuan Wu, et al. Joint Chance-Constrained Economic Dispatch Involving Joint Optimization of Frequency-Related Inverter Control and Regulation Reserve Allocation[J]. CSEE Journal of Power and Energy Systems, 2025, 11(3): 1030-1044.
DOI:
Ye Tian, Zhengshuo Li, Wenchuan Wu, et al. Joint Chance-Constrained Economic Dispatch Involving Joint Optimization of Frequency-Related Inverter Control and Regulation Reserve Allocation[J]. CSEE Journal of Power and Energy Systems, 2025, 11(3): 1030-1044. DOI: 10.17775/CSEEJPES.2023.03370.
Joint Chance-Constrained Economic Dispatch Involving Joint Optimization of Frequency-Related Inverter Control and Regulation Reserve Allocation
摘要
Abstract
The issues of uncertainty and frequency security become significantly serious in power systems with the high penetration of volatile inverter-based renewables (IBRs)
which makes it necessary to consider the uncertainty and frequency-related constraints in the economic dispatch (ED) programs. However
existing ED studies rarely proactively optimize the control parameters of inverter-based resources related to fast regulation (e.g.
virtual inertia and droop coefficients) in co-operation with other dispatchable resources to improve the system frequency security and dispatch reliability. This paper proposes a joint chance-constrained economic dispatch model that jointly optimizes the frequency-related inverter control
the system up/down reserves
and base-point power for the minimal total operational cost. In the proposed model
multiple dispatchable resources
including thermal units
dispatchable IBRs
and energy storage
are considered
and the (virtual) inertias
the regulation reserve allocations
and base-point power are coordinated. To ensure the system reliability
the joint chance-constraint formulation is also adopted. Additionally
since the traditional sample average approximation (SAA) method imposes a huge computational burden
a novel mix-SAA (MSAA) method is proposed to transform the original intractable model into a linear model that can be efficiently solved via commercial solvers. The case studies validate the satisfactory efficacy of the proposed ED model and demonstrate that the MSAA can save nearly 90% calculation time compared with the traditional SAA.
关键词
Keywords
references
1. U. S. Energy Information Administration. 2022. [Online]. Available: https://www.eia.gov/todayinenergy/index.php?tg=renewables.
2. National Energy Administration of China. [Online]. Available: https://www.nea.gov.cn/2024--10/31/c_1310787069.htm.
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