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Technical evaluation of a stand-alone photovoltaic heat pump system without batteries for cooling applications

机译:无电池的独立光伏热泵系统技术评价,用于冷却应用

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摘要

The coupling of Photovoltaic (PV) and Heat Pump (HP) systems is an attractive alternative for reducing the energy consumption associated to cooling applications, as well as increasing the renewable share in the electric systems. This work presents the results of the technical validation of a stand-alone PV-HP system operating without batteries, for two different control algorithms implemented for the compressor of the HP unit: the Maximum Power Point Tracking control (MPPT) and the inverter control. Both algorithms include a routine for mitigating the solar power fluctuations due to passing clouds, which was able to resist 75% of the clouds registered during the carrying out of the tests. The values of the main Key Performance Indicators (KPIs) traditionally used for the characterization of PV and HP systems -Performance Ratio (PR), Energy Efficiency Ratio (EER) and Seasonal Performance factor (SPF)- were calculated, as well as some new KPIs proposed for PV-HP systems. These new KPIs are proposed to distinguish the loss of performance due to any bad quality of the PV-HP and to external factors such as user behavior or the cooling period. The results show a PR of between 0.17 and 0.5, an EER of between 2.51 and 3.06 and a SPF of between 2.51 and 3.01. The low PR value is explained by the utilization ratios of the system (UREF ranged from 0.27 to 0.77) due to the characteristics of this application, rather than any bad quality in the PV-HP system.
机译:光伏(PV)和热泵(HP)系统的耦合是一种有吸引力的替代方案,用于降低与冷却应用相关的能量消耗,以及增加电气系统中的可再生份额。这项工作介绍了在没有电池的情况下操作的独立PV-HP系统的技术验证结果,对于为HP单元的压缩机实现的两个不同的控制算法:最大功率点跟踪控制(MPPT)和逆变器控制。这两种算法包括用于减轻由于通过云的太阳能波动的例程,其能够抵抗在进行测试期间登记的75%的云。传统上用于PV和HP系统的表征的主要关键绩效指标(KPI)的值计算,计算出来,以及一些新的次数 - 以及一些新的绩效率(PR),能效比(EER)和季节性绩效因数(SCF) - 以及一些新的KPI提出了PV-HP系统。提出了这些新的KPI,以区分性能损失,因为PV-HP的任何差别和用户行为或冷却期如外部因素。结果表明,0.17和0.5之间的PR,EER为2.51和3.06,2.51和3.01之间的SPF。由于本申请的特性,通过系统的特点,而不是PV-HP系统中的任何不良质量,通过系统的利用率(UREF范围为0.27至0.77)的低PR值。

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