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Operation cost and energy usage minimization of a hybrid solar/electrical water heating system

机译:太阳能/电水混合加热系统的运营成本和能源消耗最小化

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Approximately 40% to 60 % of the total energy consumed by a traditional household in South Africa can be allocated to the heating of water. Furthermore, most of water heating takes place during peak electricity consumption periods, where electricity costs are highest. In this paper, the optimal energy management of a hybrid solar electric water heater (HSWH) is presented. The hybrid system consists of an indirect flat plate collector coupled to an electric storage tank water heater (ESTWH). The electric resistive element inside the storage tank water heater serves only as an auxiliary heater when solar irradiance is insufficient. A typical medium density household within the Mangaung municipality area in the city of Bloemfontein, South Africa is considered. The aim is to evaluate if an optimal control approach can be used to effectively shift the energy usage profile of the system under the residential Time-of-Use (TOU) tariff enforced by the electricity supplier, while maintaining a comfortable thermal level of the hot water user. The secondary aim is to reduce the energy required to increase the thermal level of the water compared to a baseline water heater. The proposed water heating system with optimal control is modelled and simulated using Matlab OPTI-Toolbox. The control variable was successfully solved with switching taking place during off-peak periods while maintaining the desired temperature of the hot water consumer.
机译:南非传统家庭所消耗的总能源的大约40%至60%可以分配给水。此外,大多数水加热发生在用电成本最高的高峰用电时期。本文提出了一种混合太阳能热水器的最佳能源管理。混合系统由间接平板收集器组成,该间接平板收集器连接到储水箱热水器(ESTWH)。当太阳辐射不足时,储水箱热水器内的电阻元件仅用作辅助加热器。考虑了南非布隆方丹市Mangaung市区内的一个典型的中等密度家庭。目的是评估是否可以使用最佳控制方法来有效地改变电力供应商强制执行的住宅使用时间(TOU)费率下的系统能源使用情况,同时保持舒适的热能水平用水者。第二个目的是与基线热水器相比,减少增加水的热量水平所需的能量。使用Matlab OPTI-Toolbox对拟议的具有最佳控制的热水系统进行建模和仿真。通过在非高峰时段进行切换,同时保持所需的热水使用者温度,成功解决了控制变量的问题。

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