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Revenue maximization of electricity generation for a wind turbine integrated with a Compressed Air Energy Storage system

机译:集成了压缩空气储能系统的风力发电机的发电收益最大化

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A high-level supervisory controller is developed for a Compressed Air Energy Storage (CAES) system integrated with a wind turbine. Complementary to the low-level controllers in our previous works to track generator power and pressure, this controller coordinates different subsystems to optimize the system performance. The control strategy is obtained by solving an optimal storage/regeneration problem in order to maximize the achievable total revenue from selling electricity to the electric grid. Dynamic Programming (DP) approach is used to solve the corresponding optimal control problem that accounts for all the major losses in the CAES system as well as its nonlinear dynamics. Results show that an increase of 51% in total revenue is achievable by using the CAES system for a conventional wind turbine. Furthermore, a case study has been conducted to investigate the effect of storage system sizing on the maximum revenue.
机译:针对与风力涡轮机集成的压缩空气储能(CAES)系统开发了高级监控控制器。与我们先前跟踪发电机功率和压力的低级控制器互补,该控制器协调不同的子系统以优化系统性能。通过解决最佳的存储/再生问题来获得控制策略,以使从售电到电网的可实现总收入最大化。动态规划(DP)方法用于解决相应的最优控制问题,该问题解决了CAES系统中的所有主要损失及其非线性动力学问题。结果表明,通过将CAES系统用于常规风力涡轮机,可实现总收入增长51%。此外,还进行了案例研究,以调查存储系统大小调整对最大收益的影响。

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