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Hardware in the loop test bench using Modelica: A platform to test and improve the control of heating systems

机译:使用Modelica的回路测试台中的硬件:测试和改善加热系统控制的平台

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摘要

HVAC manufacturers make important investments to develop more efficient technologies for space heating (SH) and domestic hot water generation (DHW). Among these technologies, this article focuses on Double service air-to-water-heat-pumps (AWHP). The control of AWHP strongly impacts their performances, so that manufacturers of AWHP need to optimize the control of their systems to increase their performances. This paper presents the implementation of a Hardware-In-the-Loop - HIL - real time simulation test bench for AWHP. The new test bench proposed uses real weather conditions and simulates building's and occupants' response thanks to a virtual model. This test bench allows R&D departments and manufacturers to test several heating systems in parallel as well as different control options. It may also limit the need for field testing. It thus has the potential to reduce the cost and time required for AWHP development-to-market process. The test bench presented in this paper is used for a specific AWHP and a typical building in France. The analysis of the impact of the heat pump's control on the system dynamics and on the indoor thermal comfort enables to highlight control issues related to the heating curve, the DHW management and the defrost process of AWHP. Optimized control parameters throughout time are proposed in view of reaching lower consumption and better performances. This case study shows the potential of the HIL test benches for manufacturers to optimize the development of their products controls. (C) 2016 Elsevier Ltd. All rights reserved.
机译:暖通空调制造商进行了重要投资,以开发更高效的空间供暖(SH)和生活热水产生(DHW)技术。在这些技术中,本文重点介绍双重服务的空气对水热泵(AWHP)。 AWHP的控制强烈影响其性能,因此AWHP的制造商需要优化其系统的控制以提高其性能。本文介绍了用于AWHP的硬件在环-HIL-实时仿真测试台的实现。提议的新测试台使用真实的天气条件,并通过虚拟模型模拟建筑物和居住者的反应。该测试台使研发部门和制造商可以并行测试多个加热系统以及不同的控制选项。它还可能会限制对现场测试的需求。因此,它有可能减少AWHP从开发到市场的过程所需的成本和时间。本文介绍的测试台用于特定的AWHP和法国的典型建筑。对热泵控制对系统动力学和室内热舒适度的影响进行分析,可以突出显示与加热曲线,DHW管理和AWHP除霜过程有关的控制问题。考虑到达到更低的消耗和更好的性能,提出了贯穿整个时间的优化控制参数。此案例研究显示了HIL测试平台对于制造商优化其产品控件开发的潜力。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Applied Energy》 |2017年第15期|107-120|共14页
  • 作者单位

    EDF R&D, ENERBAT Dept, Energy Syst Bldg Grp, Moret Sur Loing, France|PSL Res Univ, MINES ParisTech, CES Ctr Energy Efficiency Syst, 60 Blvd St Michel, F-75006 Paris, France;

    PSL Res Univ, MINES ParisTech, CES Ctr Energy Efficiency Syst, 60 Blvd St Michel, F-75006 Paris, France;

    PSL Res Univ, MINES ParisTech, CES Ctr Energy Efficiency Syst, 60 Blvd St Michel, F-75006 Paris, France;

    EDF R&D, ENERBAT Dept, Energy Syst Bldg Grp, Moret Sur Loing, France;

    EDF R&D, ENERBAT Dept, Energy Syst Bldg Grp, Moret Sur Loing, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    HIL; Building simulation; Heat pump; DHW; Control parameters;

    机译:HIL;建筑模拟;热泵;DHW;控制参数;

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