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Optimal Energy Management of Wind-Battery Hybrid Power System With Two-Scale Dynamic Programming

机译:基于二阶动态规划的风电混合动力系统最优能量管理

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This study is concerned with the optimal energy management for a wind-battery hybrid power system (WBHPS) with local load and grid connection, by including the current and future information on generation, demand, and real-time utility price. When applying typical dynamic optimization schemes to such a problem with a single time scale, the following dilemma usually presents: it is more beneficial to plan the (battery) storage setpoint trajectory for the longer horizon, while prediction of renewable generation, utility price, and load demand is more accurate for the shorter term. To relieve such conflict, a two-scale dynamic programming (DP) scheme is applied based on multiscale predictions of wind power generation, utility price, and load. A macro-scale dynamic programming (MASDP) is first performed for the whole operational period, based on long-term ahead prediction of electricity price and wind energy. The resultant battery state-of-charge (SOC) is thus obtained as the macro-scale reference trajectory. As the operation proceeds, the micro-scale dynamic programming (MISDP) is applied to the short-term interval based on short-term three-hour ahead predictions. The MASDP battery SOC trajectory is used as the terminal condition for the MISDP. Simulation results show that the proposed method can significantly decrease the energy cost compared with the single scale DP method.
机译:<?Pub Dtl?>该研究涉及具有本地负荷和电网连接的风电混合动力系统(WBHPS)的最佳能源管理,方法是包括有关发电,需求和实时效用的当前和未来信息价钱。当在单个时间尺度上将典型的动态优化方案应用于此类问题时,通常会出现以下难题:为更长的时间范围规划(电池)存储设定点轨迹更为有利,同时预测可再生能源发电,公用事业价格和短期内负载需求更为准确。为了缓解这种冲突,基于风力发电,公用事业价格和负荷的多尺度预测,应用了两尺度动态规划(DP)方案。根据电价和风能的长期超前预测,首先在整个运营期间执行宏观动态规划(MASDP)。因此,获得的电池充电状态(SOC)作为宏观参考轨迹。随着操作的进行,基于短期提前三小时的预测,将微尺度动态编程(MISDP)应用于短期间隔。 MASDP电池SOC轨迹用作MISDP的终止条件。仿真结果表明,与单尺度DP方法相比,该方法可以显着降低能耗。

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