直升机涡轮轴发动机调节器的研制

Gennadii Ranchenko, Anna Buryachenko, Viacheslav Grudinkin, Dmitriy Burunov, V. Danilov
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引用次数: 0

摘要

研究的主题是RDC-450M- 117v - TV3-117VMA-SBM1V数字发动机调节器的开发,基于该企业先前为AI-450M发动机创建的RDC-450M,考虑到发动机特性和使用条件的差异。工作目的是基于有关航空发动机特性的信息开发RDC-450M-117V,包括基于实验数据的数学模型的细化,同时考虑到开发条件的差异。开发人员面临的任务是根据开发条件确定最优调节器结构,完善发动机的数学模型,研究泵-调节器的特性,选择用于扭矩测量的旋转传感器信号的最佳处理形式。所采用的方法是在JSC“Element”、JSC“Motor Sich”和泵调节器制造商的展台上进行发动机和泵调节器特性的实验研究;用数值模拟处理实验数据,然后进行统计分析。采用定量分析的方法对旋转传感器信号的实验数据(波形)进行了研究。结果。考虑到国际标准DO-254和DO-178C的要求,开发了设计和软件文档,并制作了一个新修改的调节器原型。完善了发动机数学模型,在此基础上确定了一种新型发动机的航空发动机立式仿真器。提出了一种自适应控制泵-调节器的算法,在泵-调节器运行不稳定的情况下,仍能保证燃油消耗的稳定维持。通过对扭矩传感器信号波形的定量分析,找到了保证最佳比较(测量)电平选择的特征点。试点调节器原型在乌克兰的专门实验室通过了电磁兼容性和耐雷击等测试。该调节器作为发动机的一部分在Motor Sich JSC展台上进行了测试,并作为直升机的一部分在外国客户现场进行了测试,包括首次演示飞行。取得的成果具有科学的新颖性:建立了明确的发动机TV3-117VMA-SBM1V数学模型,并在立式模拟机上实现;形成了控制泵-调节器的自适应算法,在泵-调节器运行不稳定的情况下,使燃油消耗保持稳定;选择了测量扭矩的旋转传感器信号的最佳处理形式。现实意义。一种新的发动机调节器被开发和测试,它提供了第一次直升机演示飞行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of the helicopter turboshafted engine regulator
The subject of research was the development of the RDC-450M-117V – the TV3-117VMA-SBM1V digital engine regulator – based on the RDC-450M previously created at the enterprise for the AI-450M engine, considering differences in engine characteristics and exploitation conditions. The work purpose was to develop RDC-450M-117V based on information about aircraft engine characteristics, including refinement of its mathematical model based on experimental data, taking into account the exploitation condition difference. The tasks faced by the developers were to determine the optimal regulator structure in view of exploitation conditions, refine the mathematical model of the engine, and study the characteristics of the pump-regulator, to select the optimal processing form for the signal of rotation sensors for torque measurement. The methods that were applied were experimental engine and pump-regulator characteristics study on the stands of JSC "Element", JSC "Motor Sich", and on pump-regulator manufacturer’s stands; processing of experimental data using numerical simulation with subsequent statistical analysis. The rotation sensors signals experimental data (waveforms) were studied using a quantitative analysis method. The results. Design and software documentation was developed considering the requirements of international standards DO-254 and DO-178C, and a prototype of the regulator new modification was made. The engine mathematical model was refined, on the basis of which the stand-imitator of aircraft engines was finalized for a new type of engine. An adaptive algorithm for controlling the pump-regulator was developed, which made it possible to ensure stable maintenance of fuel consumption, despite the unstable operation of the pump-regulator. Using a quantitative analysis of the torque sensor signal waveforms, characteristic points were found that ensure the choice of the optimal level of comparison (measurement). The pilot regulator prototype passed tests including electromagnetic compatibility and lightning resistance in specialized laboratories in Ukraine. The regulator was tested as part of the engine at the Motor Sich JSC stands and as part of a helicopter at the foreign customer site, including the first demonstration flight. The scientific novelty of the obtained results are: the clarified engine TV3-117VMA-SBM1V mathematical model was formed and implemented in a stand-imitator; the adaptive algorithm for controlling the pump-regulator was formed and allowed to provide stable fuel consumption maintenance, despite the pump-regulator unstable operation; and the optimal processing form for the signal of rotation sensors for measuring torque was selected. Practical significance. A new engine regulator was developed and tested, and it provided the first helicopter demonstration flight.  
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