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Demand side management with stepped model predictive control

机译:阶梯式模型预测控制需求侧管理

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Despite more and more photovoltaic installations in residential electricity networks, community peak demand is often not reduced because of evening peaks occurring outside of solar hours. Air conditioning has been a key reason for these peak demands for many developed countries. To better cope with this type of peak demand, this paper proposes a new Stepped Model Predictive Control (SMPC) strategy to perform real time control whilst considering occupant comfort and future uncertainties. This strategy has been tested with a community case study. The case study shows that with the SMPC, peak demand reduction be achieved whilst maintaining residents' comfort. Before the introduction of compulsory demand tariff for all customers in near future, this study presents a practically implementable control strategy to reduce peak demand without adding electrochemical energy storage systems.
机译:尽管住宅电网中的光伏装置越来越多,但由于在太阳小时外发生的晚期峰值,社区峰值需求往往不会降低。空调一直是许多发达国家这些峰值需求的关键原因。为了更好地应对这种类型的峰值需求,本文提出了一种新的步进模型预测控制(SMPC)策略,以考虑乘员的舒适和未来的不确定性,同时执行实时控制。该战略已通过社区案例研究进行了测试。案例研究表明,随着SMPC,保持峰值需求,同时保持居民的舒适性。在不久的将来引入所有客户的强制性需求关税之前,本研究提出了实际上可实现的控制策略,以降低峰值需求而不添加电化学能量存储系统。

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