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Reserve Allocation of Integrated Electrical and Natural Gas System Considering Accurate Modelling for CCGTs’ Mode Transition Trajectories

机译:考虑到CCGT的模式过渡轨迹的精确建模,集成的电气和天然气系统的储备分配

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With higher penetration of renewable energy sources (RES), more combined-cycle gas turbines (CCGTs) will be deployed. These flexible gas-fired generators can provide efficient system reserve to deal with rapid power fluctuation of renewable energy. Therefore, an accurate reserve allocation (RA) on CCGTs is necessary to guarantee efficiency and safety of integrated electricity and natural gas system operation. Traditional RA model ignores the non-dispatchable start-up and shut-down processes of combustion turbines and steam turbines (i.e. transition trajectories) in CCGTs and is less considered about the effect from natural gas system. A novel RA model is proposed considering the effect of transition trajectories of CCGTs, gas-electricity coupling and unit commitment to meet the demand of load and RES forecast error and N-1 contingencies. The simulation results show that transition trajectories and gas load level greatly affect the reserve scheduling of CCGTs.
机译:随着可再生能源(RES)的普及率更高,将部署更多的联合循环燃气轮机(CCGT)。这些灵活的燃气发电机可以提供有效的系统储备,以应对可再生能源的快速电力波动。因此,有必要对CCGT进行准确的储备分配(RA),以确保电力和天然气系统一体化运营的效率和安全性。传统的RA模型忽略了CCGT中燃气轮机和蒸汽轮机的不可调度的启动和关闭过程(即过渡轨迹),很少考虑天然气系统的影响。考虑CCGTs的过渡轨迹,气电耦合和机组负荷的影响,提出了一种新颖的RA模型,以满足负荷和RES预测误差以及N-1突发事件的需求。仿真结果表明,过渡轨迹和瓦斯负荷水平极大地影响了CCGTs的储量调度。

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