LOW VOLTAGE APPARATUS ›› 2021, Vol. 0 ›› Issue (11): 15-21.doi: 10.16628/j.cnki.2095-8188.2021.11.003

• Research & Analysis • Previous Articles     Next Articles

Optimal Dispatching Method of Wind-Hydrogen Hybrid System Considering Heat Balance of Hydrogen Energy Storage

SI Yang1,2, CHEN Laijun1, MA Linrui1, GAO Mengyu1, CHEN Xiaotao1, MEI Shengwei1,2   

  1. 1. Qinghai Key Lab of Efficient Utilization of Clean Energy (Tus-Institute for Renewable Energy),Qinghai University,Xining 810016, China
    2. State Key Laboratory of Control and Simulation of Power System and Power Generation Equipment (Electric Machinery Department,Tsinghua University),Beijing 100091,China
  • Received:2021-06-28 Online:2021-11-30 Published:2022-01-25

Abstract:

When wind-hydrogen hybrid system (W-HHS) participates in grid,the heat demand characteristics of hydrogen energy storage system (HESS) working intermittently become the key factor affecting system dispatching.A HESS model with waste heat utilization system is established.Under the heat balance constraints composed of heat power balance and thermal energy balance of HESS,an optimal dispatching method of W-HHS is proposed to improve the profit and meet the constraints of tracking grid dispatching curve.Finally,the proposed model and method are verified and analyzed through an example of Qinghai wind plant data.The results show that the heat balance constraints of the HESS have an important impact on the operation and dispatching of the W-HHS.The proposed dispatching method improves the operation reliability of the W-HHS on the premise of ensuring the heat power balance and thermal energy balance of the HESS.Parameter analysis shows that reducing the heat dissipation coefficient can decrease the impact of heat balance constraints on the dispatching strategy of W-HHS and improve the grid connected power of wind plant.

Key words: hydrogen energy storage, hybrid system, optimal dispatching, distributionally robust, heat balance

CLC Number: