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Interaction Between a Wind-PV-Battery-Heat Pump Trigeneration System and Office Building Electric Energy Demand Including Vehicle Charging

机译:风电池 - 电池 - 热泵三极管系统和办公建筑电能需求之间的相互作用,包括车辆充电

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The increasingly electric energy demand, owing to the widespread of use heat pumps and electric vehicles in urban contexts, in the next few years will require a strong employment of renewable energy systems and appropriate storage systems. The coupling of more renewable systems with storage systems allows mitigation of the high uncertainty and intermittence of the renewable resources and, therefore, the achievement of greater reliability in satisfying the load and reducing energy in excess. This work presents a dynamic and energy reliability analysis of a renewable hybrid trigeneration system (RHTS) consisting of a photovoltaic generator, a wind micro-generator and an electric storage battery (electric renewable hybrid system ERHS) used to supply a heat pump, electric office devices, and an electric vehicle charging station. The heat pump is employed for heating and cooling air-conditioning of an office building environment. The RHTS and subsystem grid-connected ERHS considered are employed to satisfy the reference office building energy demand in a Mediterranean area. The dynamic simulation results are employed to study the dynamic interaction between the ERHS with the three electric loads in different characteristic weeks. Different indices are defined and evaluated, in the absence and presence of a battery storage system, to identify the most contemporary load compared with the renewable sources availability and to determine the system energy reliability.
机译:由于在城市环境中使用热泵和电动车辆的广泛来说,日益电力需求,在未来几年中,需要强大就业可再生能源系统和适当的存储系统。具有存储系统的更可再生系统的耦合允许减轻可再生资源的高不确定性和间歇性,因此,实现更高的可靠性在满足负荷和减少过量的能量方面。该工作介绍了由光伏发电机,风力发电机和蓄电池(电动再生混合系统ERHS)组成的可再生混合动力学系统(RHTS)的动态和能量可靠性分析,用于提供热泵,电动办公室设备和电动车充电站。热泵用于加热和冷却办公室建筑环境的空调。考虑的RHT和子系统网格连接的ERH被认为是为了满足地中海地区的参考办公室建筑能源需求。动态仿真结果用于研究不同特性周中三个电负载的ERH之间的动态相互作用。在缺乏和存在的电池存储系统的情况下定义和评估不同的指标,以识别与可再生源可用性相比最具现代的负载,并确定系统能量可靠性。

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