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Comparison of economic model predictive control and rule-based control for residential energy storage systems

机译:基于经济模型预测控制和居住能源储存系统的规则控制的比较

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摘要

This study quantifies the benefits of implementing model predictive control on residential solar PV and energy storage systems considering a time-of-use demand tariff, feed-in tariff and varying PV system sizes and battery life-cycle costs. The control system analysed makes use of economic model predictive control (EMPC) whereby the objective function is directly tied to the economics of the system. Using residential load and PV data from an Australian distribution network service provider, the EMPC controller is compared to a rule-based controller, highlighting the benefits of EMPC in regards to annual economic performance and battery energy throughput. The EMPC algorithm is then tested using 10 residential customers at the low voltage feeder level showing the capacity for the EMPC controller to shift peak demand and flatten the aggregated load profile of 30 residential customers.
机译:本研究量化了在考虑使用时间需求关税,进料税和不同的光伏系统尺寸和电池寿命周期和电池寿命尺寸和电池寿命成本的考虑居住太阳能光伏和能量存储系统上实施模型预测控制的益处。分析的控制系统利用经济模型预测控制(EMPC),由此客观函数直接与系统的经济学相关联。使用来自澳大利亚分销网络服务提供商的住宅负载和PV数据,EMPC控制器与基于规则的控制器进行比较,突出了EMPC在年度经济性能和电池能源吞吐量方面的好处。然后在低电压馈线级别使用10个住宅客户进行EMPC算法,显示EMPC控制器的容量,以换档峰值需求,并使30个住宅客户的聚合负载曲线展平。

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