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Closed-loop control of shock train in inlet-isolator with incident shocks

机译:入射冲击入口隔离器冲击火车的闭环控制

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摘要

The close-loop control of the shock train location considering the effects of incident shocks has been investigated in a direct-connect wind tunnel. Under this condition, three algorithms for shock train location were investigated: pressure ratio method, static pressure summation method and backpressure method. The first method was found to be most suitable for the case with incident shocks and implemented experimentally within the closed-loop control. The backpressure method, which is identified to be a much better proxy for shock-train location in previous study, is found to be unsuitable when applied to the case with incident shocks, due to the less correlation with the shock train motion. A proportional-integral controller was designed and verified in a relative uniform flow condition, and then the applicability was explored to the cases with incident shocks. It was found that within the interaction region the shock train cannot follow the instruction well, because the inner close-loop of the shock train responds faster than the control system. Based on the distribution of the interaction region, an improved measure was proposed and examined experimentally.
机译:考虑到入射冲击效果的冲击列车定位的闭环控制已经在直接连接风洞中进行了研究。在这种情况下,研究了用于冲击列车位置的三种算法:压力比法,静压求和方法和背压方法。发现第一种方法对于入射冲击和在闭环控制内实验实施的情况最适合这种情况。由于与入射冲击的情况施加到发生冲击的情况时,发现在先前研究中被识别为对冲击列车位置更好的用于震动火车位置的更好代理的背压方法。在相对均匀的流动条件下设计和验证了比例整体控制器,然后探讨了具有入射冲击的情况的适用性。发现在相互作用区域内,冲击火车不能遵循指令,因为冲击火车的内闭环比控制系统更快。基于相互作用区域的分布,提出了一种改进的措施并实验检查。

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