BESS)参与一次调频的控制策略难以在保证系统频率稳定的基础上,使荷电状态(state of charge
SOC)维持在合理范围内。针对此问题,提出一种基于系统频率与SOC状态预测的储能一次调频控制策略。首先,根据系统频率变化情况,利用模糊控制自适应分配BESS下垂控制、虚拟惯性以及负虚拟惯性控制的出力比重;其次,根据采样点当前的负荷扰动、系统状态变量以及SOC构建模型预测控制(model predictive control
The existing control strategies of battery energy storage system (BESS) participating in primary frequency regulation are difficult to maintain state of charge (SOC) within a reasonable range while ensuring the stability of system frequency. To solve this problem
a primary frequency regulation control strategy for energy storage based on system frequency and SOC state prediction is proposed. Firstly
according to the change of system frequency
fuzzy control is used to adaptively allocate the output proportion of droop control
virtual inertia
and negative virtual inertia control of BESS. Secondly
according to the current load disturbance of the sampling point
system state variables
and SOC
a model predictive control (MPC) prediction model is adopted to construct its cost function
and quadratic programming is solved to obtain the current optimal charge and discharge coefficient of BESS. Thirdly
rolling optimization of MPC prediction model and cost function are performed according to the output SOC and the actual value of system frequency. Finally
a primary frequency regulation model containing BESS is built by using simulation software
and the effectiveness of this strategy is verified by simulation under step and continuous disturbance conditions. The simulation results show that this strategy can not only fully exert the frequency regulation potential of BESS
improve system frequency
reduce the number of unit frequency regulation actions
but also maintain SOC within a reasonable range. This strategy can provide a useful reference for related research on energy storage participating in primary frequency regulation.