首页> 外文会议>European Photovoltaic Solar Energy Conference and Exhibition >FAST SIMULATION ALGORITHM FOR PV SELF-CONSUMPTION WITH HEAT PUMP SYSTEMS: CALIBRATION METHODOLOGY WITH COMPREHENSIVE DYNAMIC SIMULATION MODEL AS REFERENCE
【24h】

FAST SIMULATION ALGORITHM FOR PV SELF-CONSUMPTION WITH HEAT PUMP SYSTEMS: CALIBRATION METHODOLOGY WITH COMPREHENSIVE DYNAMIC SIMULATION MODEL AS REFERENCE

机译:热泵系统光伏自耗快速仿真算法:校准方法与综合动态仿真模型作为参考

获取原文

摘要

Self-sufficiency of systems with photovoltaic (PV) energy production gets more and more important. Demand side management with the use of heat pump and thermal energy storage has proven to be an efficient and effective means for increasing the PV self-consumption ratio. Accurate prediction of the self-consumption and the resulting self-sufficiency quota requires a comprehensive simulation including heat pump characteristics, thermal balance of the building and hot water demand profiles. These simulations are usually elaborate and time consuming. This work presents a fast but reliable estimate of the system's PV self-consumption potential. It is based on the well-known tool Sunny Design, which has been extended by the capability to calculate the building and hot water energy demand, and applying heat pump model with realistic characteristic curves. The proposed algorithm is capable of including battery storage and advanced controllers as future extensions. The algorithm is in accordance with the physics-based simulation tool Polysun which includes device physics as well as controller details with a tight coupling between the electrical and the thermal part of the system. The newly introduced model parameters in Sunny Design are calibrated and validated with the detailed Polysun model.
机译:具有光伏(PV)能源生产的系统自给自足越来越重要。需求侧管理使用热泵和热能存储已经证明是提高光伏自耗比的有效且有效的手段。精确预测自我消耗和由此产生的自给自足的配额需要全面的模拟,包括热泵特性,建筑物的热平衡和热水需求曲线。这些模拟通常会详细阐述和耗时。这项工作提出了对系统的光伏自耗潜力的快速但可靠的估计。它基于众所周知的工具阳光设计,这一直通过计算建筑和热水能源需求的能力,以及用现实性能曲线应用热泵模型。该算法能够包括电池存储和高级控制器,作为未来的扩展。该算法根据基于物理的仿真工具PolySun,其包括设备物理学以及控制器细节,电气和系统的热部分之间具有紧密耦合的控制器细节。新引入的阳光设计中的模型参数进行了校准并用详细的PolySun模型验证。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号