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Model Based Control of Intake Air Temperature and Humidity on the Test Bench

机译:基于模型控制测试台上的进气温温度和湿度

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Engine test benches are crucial instruments to perform tests on internal combustion engines. Possible purposes of these tests are to detect the engine performance, check the reliability of the components or make a proper calibration of engine control systems managing the actuations. Since many factors affect tests results in terms of performance, emissions and components durability, an engine test bench is equipped with several conditioning systems (oil, water and air temperature, air humidity, etc.). One of the most important systems is the HVAC (Heating, Ventilating and Air Conditioning), that is essential to control the conditions of the intake air. Intake air temperature, pressure and humidity should be controllable test parameters, because they play a key role on the combustion development. In fact, they can heavily affect the performance detected, such as power and specific consumption, and, in some cases, they may promote knock occurrence. This work presents an HVAC model-based control methodology, where each component of the air treatment system (humidifier, pre-heating and post-heating resistors, chiller and fan) is managed coupling open-loop and closed-loop controls. Each branch of the control model is composed of two parts, the first one to evaluate the target for the given HVAC component, based on the system physical model, the second one is a PH) controller based on the difference between the set-point and the feedback values. The control methodology has been validated on an engine test bench where the automation system has been developed on an open software Real-Time compatible platform, allowing the integration of the HVAC control with all other functionalities concerning the test management. The paper shows the plant layout, details the control strategy and finally analyzes experimental results obtained on the test bench, highlighting the benefits of the proposed HVAC management approach.
机译:发动机测试台是在内燃机上进行测试的重要仪器。这些测试的可能目的是检测发动机性能,检查组件的可靠性,或者对管理致动的发动机控制系统进行适当的校准。由于许多因素影响性能,排放和部件耐用性的测试,因此发动机测试台配有几种调节系统(油,水和空气温度,空气湿度等)。最重要的系统之一是HVAC(加热,通风和空调),对控制进气条件至关重要。进气温温度,压力和湿度应该是可控的测试参数,因为它们在燃烧开发上发挥着关键作用。事实上,它们可以严重影响检测到的性能,例如电力和特定消费,并且在某些情况下,他们可能会促进爆震。该工作提出了一种基于HVAC模型的控制方法,其中空气处理系统(加湿器,预热和后加热电阻器,冷却器和风扇)的每个部件是耦合开环和闭环控制的。控制模型的每个分支由两部分组成,第一个是根据系统物理模型评估给定HVAC组件的目标,基于设定点与差异的第二个是pH)控制器反馈值。控制方法已在发动机测试台上验证,其中自动化系统已经在开放的软件实时兼容平台上开发,允许HVAC控制与关于测试管理的所有其他功能集成。本文显示了植物布局,详细说明了控制策略,最后分析了在测试台上获得的实验结果,突出了提出的HVAC管理方法的益处。

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