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Testing of controllers for thermal solar systems

机译:测试热太阳能系统的控制器

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One standardised way to determine the performance of thermal solar systems is based on component testing and system simulation. The approach is to test the solar collector, the store, the controller and other selected components separately and to carry out system simulations using the determined parameters. Due to increasingly complex control strategies, particularly implemented within so-called multi-function controllers for solar combisystems, the available test method for controllers - for the time being defined in ENV 12977-2, Annex B - has to be extended. In order to substitute temperature sensors by variable resistors and to document the response of a tested controller, a computer based test facility featuring an input/output-emulator between the controller and a PC has been developed. The emulator generates varying resistance values as input signals for the controller and records the status of the different outputs as its response. Both, manual adjustment and programmed temperature profiles provided by the PC are possible. All transmitted inputs as well as the response of the controller are stored in a data file. Experience gained from testing controllers used in thermal solar systems for combined hot water preparation and space heating, commonly called combisystems shows that alleged advanced control algorithms or fancy features do not inevitably result in an improvement of system performance or increased reliability. The extended test method and the set-up of the test facility described in this paper enable detailed investigations of nearly all kinds of controllers. Particularly with respect to multi-function controller testing, the introduced test method will be one basis for the upcoming standard prCEN/TS 12977-5, replacing ENV 12977-2, Annex B.
机译:确定热太阳能系统性能的一种标准化方法是基于组件测试和系统仿真。该方法是分别测试太阳能收集器,存储,控制器和其他选定的组件,并使用确定的参数进行系统仿真。由于控制策略日益复杂,尤其是在太阳能组合系统的所谓多功能控制器中实施的控制策略,必须扩展控制器的可用测试方法(目前在ENV 12977-2附件B中定义)。为了用可变电阻器代替温度传感器并记录被测控制器的响应,已经开发了一种基于计算机的测试设备,该设备在控制器和PC之间具有输入/输出仿真器。仿真器生成变化的电阻值作为控制器的输入信号,并记录不同输出的状态作为其响应。 PC提供的手动调节和已编程的温度曲线均可使用。所有传输的输入以及控制器的响应都存储在数据文件中。从用于混合热水制备和空间加热的热太阳能系统中使用的测试控制器(通常称为combisystems)获得的经验表明,所谓的高级控制算法或特殊功能不会不可避免地导致系统性能的提高或可靠性的提高。本文所述的扩展测试方法和测试设备的设置可以对几乎所有类型的控制器进行详细研究。特别是在多功能控制器测试方面,引入的测试方法将成为即将发布的prCEN / TS 12977-5标准的基础之一,以取代附件B的ENV 12977-2。

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