The Integrated Energy System effectively leverages multiple energy sources to promote energy conservation, reduce emissions, and improve efficiency. This paper presents an optimal dispatch model that integrates the dispatchability of the heat supply pipeline network with demand response mechanisms, accounting for heat storage capabilities. Simulation results demonstrate that incorporating these storage characteristics enables seamless coordination between the electrical and heating systems across time and space. Furthermore, demand response effectively alleviates peak power supply pressures and reduces renewable energy curtailment, thereby enhancing overall system efficiency.

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Economic Dispatch of Integrated Energy Systems Considering Heat Storage and Demand Response in Pipeline Networks First

  • Jinfeng Wang,
  • Jiale Pang,
  • Zhaoyuan Zhang,
  • Zhenze Wei

摘要

The Integrated Energy System effectively leverages multiple energy sources to promote energy conservation, reduce emissions, and improve efficiency. This paper presents an optimal dispatch model that integrates the dispatchability of the heat supply pipeline network with demand response mechanisms, accounting for heat storage capabilities. Simulation results demonstrate that incorporating these storage characteristics enables seamless coordination between the electrical and heating systems across time and space. Furthermore, demand response effectively alleviates peak power supply pressures and reduces renewable energy curtailment, thereby enhancing overall system efficiency.