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Centrifugal compressor active surge controller design based on fuzzy type II

机译:基于模糊II型的离心压缩机主动喘振控制器设计

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Centrifugal compressors at low mass flow rates are prone to surge instability. In the surge condition, flow rate and discharge pressure collapse suddenly and rise again in rapid succession. These fluctuations cause severe damages to the compressor and its equipment. Surge is a complex and non-linear phenomenon with high uncertainty. In this paper, active surge controller based on fuzzy type II is presented that provides more flexibility in design progress, higher potential for control and modeling the uncertainties. The proposed surge control specifies and monitors the compressor operating point deviation from the surge point. If this surge deviation reduces so this controller reforms capacity control system commands and keeps the compressor flow rate at the admissible minimum value by opening an anti-surge valve. Simulation results show that the fuzzy type II surge controller acts betters than the fuzzy type I and traditional PID feedback controllers against uncertainties and disturbances especially surge line movements. To improve the reliability and acceptability of the controller, a feedback surge controller with surge avoidance method is used as a backup for the active surge controller.
机译:低质量流量下的离心式压缩机容易发生浪涌不稳定性。在喘振条件下,流量和排出压力突然崩溃,在快速连续中再次升高。这些波动对压缩机及其设备造成严重损坏。浪涌是一种复杂和非线性现象,具有高不确定性。在本文中,提出了基于模糊型II的主动浪涌控制器,在设计进度方面提供了更大的灵活性,对控制和建模不确定性的潜力。所提出的浪涌控制指定并监视了从浪涌点的压缩机工作点偏差。如果这种浪涌偏差减少,因此该控制器改变容量控制系统命令并通过打开抗喘振阀将压缩机流量保持在可允许的最小值处。仿真结果表明,模糊类型的II电涌控制器采用比模糊型I和传统的PID反馈控制器起步,反对不确定性和扰动,特别是喘振线运动。为了提高控制器的可靠性和可接受性,具有浪涌避免方法的反馈浪涌控制器用作有源浪涌控制器的备份。

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