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Stochastic scheduling with inertia-dependent fast frequency response requirements

机译:具有惯性相关的快速频率响应要求的随机调度

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Summary form only given. High penetration of wind generation will increase the requirement for fast frequency response services as currently wind plants do not provide inertial response. Although the importance of inertia reduction has been widely recognized, its impact on the system scheduling has not been fully investigated. In this context, this paper proposes a novel mixed integer linear programming (MILP) formulation for stochastic unit commitment that optimizes system operation by simultaneously scheduling energy production, standing/spinning reserves and inertia-dependent fast frequency response in light of uncertainties associated with wind production and generation outages. Post-fault dynamic frequency requirements, (a) rate of change of frequency, (b) frequency nadir and (c) quasi-steady-state frequency are formulated as MILP constraints by using the simplified model of system dynamics. Moreover the proposed methodology enables the impact of wind uncertainty on system inertia to be considered. Case studies are carried out on the 2030 Great Britain system to demonstrate the importance of incorporating inertia-dependent fast frequency response in the stochastic scheduling and to indicate the potential for the proposed model to inform reviews of grid codes associated with fast frequency response and future development of inertia-related market.
机译:仅提供摘要表格。风力发电的高普及率将增加对快速频率响应服务的需求,因为当前的风力发电厂还无法提供惯性响应。尽管惯性降低的重要性已得到广泛认可,但尚未充分研究其对系统调度的影响。在这种情况下,本文提出了一种用于随机机组承诺的新型混合整数线性规划(MILP)公式,该方法可通过同时计划发电量,静止/自旋储备量和与惯性相关的快速频率响应(与风力发电相关的不确定性)来优化系统运行和发电中断。通过使用简化的系统动力学模型,将故障后动态频率要求,(a)频率变化率,(b)频率最低点和(c)准稳态频率公式化为MILP约束。此外,所提出的方法使得能够考虑风的不确定性对系统惯性的影响。对2030年英国系统进行了案例研究,以证明在随机调度中纳入依赖于惯性的快速频率响应的重要性,并表明所提出的模型有可能为与快速频率响应和未来发展相关的电网法规提供参考惯性相关市场。

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