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February 2, 2026Energies0 citationsOpen Access

Carbon Trading-Driven Optimal Collaborative Scheduling of Integrated Energy Systems with Multiple Flexible Loads

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ZWZhenxing WenTWTong WuDZDingming Zhuo

Key Points

  • The research aims to develop an optimal scheduling strategy for integrated energy systems that incorporates flexible loads and carbon trading.
  • Constructed a mathematical model for user-side flexible loads.
  • Developed an optimization framework to integrate carbon trading into the operational model.
  • Minimized total operating costs using CPLEX solver in simulations.
  • Simulation results show effective utilization of demand response capabilities.
  • The strategy coordinated multiple resources, including electricity, heat, and storage.
  • Achieved a reduction in carbon emissions while ensuring economical operation.

Abstract

To address the challenges associated with energy decarbonization and economic operation in integrated energy systems (IESs), this paper proposes a collaborative optimal dispatch strategy for IES that considers multiple flexible loads under a carbon trading mechanism. First, a mathematical model of user-side loads is constructed according to the characteristics of flexible loads. Second, a comprehensive optimization framework is constructed by embedding the carbon trading mechanism into the IES operational model. The objective function minimizes the total operating costs, including energy purchase costs, fuel costs, carbon trading costs, operation and maintenance costs, compensation costs, and green certificate revenues. The CPLEX solver is then employed to solve the model. Finally, a case study is conducted to validate the proposed method. Simulation results demonstrate that the carbon trading mechanism effectively leverages the demand response capabilities and coordinates multiple resources, including electricity, heat, and storage, thereby achieving low-carbon economic operation of the system.

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Cite This Study

Wen et al. (2026) studied this question.

synapsesocial.com/papers/6980fe7cc1c9540dea8109bahttps://doi.org/10.3390/en19030746
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