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Modeling and planning of smart buildings energy in power system considering demand response

机译:考虑需求响应的电力系统中智能建筑能量的建模与规划

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摘要

The development of industry and the increasing of the energy demand in the today's power system make it possible to maximize the potential of existing and renewable energy resources. On the other hand, using of these resources required efficient management and planning model, because without the adequate energy management, the power system cannot reach a high-performance model with maximum efficiency. Therefore, this paper first addresses the modeling of energy management in smart buildings having responsiveon-responsive devices and renewable photovoltaic resources. To manage the solar system employment, the KNX protocol is used. Also, the batteries are used in a way that they are charged at low power consumption and it will be as a generating unit during the peak-load time, therefore, the objective function is minimizing the power system loss and the related cost. Since the proposed model is nonlinear and has some complexity, the particle swarm algorithm (PSO) is used. To achieve the minimum losses, the best candidate buses are selected based on the proposed sensitivity analysis to manage the connected buildings. As a result, the function of the overall cost is based on the amount of energy produced and sold. Finally, the presented model is examined and evaluated on modified IEEE 30-bus test system based on the statistical analysis in different scenarios. Moreover, it is conclude from the planning that the operating cost significantly controls by the charge and discharge mechanism of the battery and the photovoltaic units.
机译:行业的发展和当今电力系统中的能源需求的增加使得能够最大限度地提高现有和可再生能源的潜力。另一方面,使用这些资源需要有效的管理和规划模型,因为没有足够的能源管理,电力系统无法达到最高效率的高性能模型。因此,本文首先解决了具有响应/非响应装置和可再生光伏资源的智能建筑中能源管理的建模。为了管理太阳系就业,使用了KNX协议。此外,电池以低功耗充电的方式使用,并且在峰值负载时间期间,它将作为发电单元,因此,目标函数最小化电力系统损耗和相关成本。由于所提出的模型是非线性的并且具有一些复杂性,因此使用粒子群算法(PSO)。为了实现最小损失,基于所提出的敏感性分析来选择最佳候选总线来管理连接的建筑物。结果,整体成本的函数基于产生和销售的能量。最后,基于不同场景的统计分析,检查和评估所提出的模型和评估修改的IEEE 30总线测试系统。此外,从规划中得出结论,即经营成本通过电池和光伏单元的电荷和排出机构显着控制。

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