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Aircraft anti-skid braking control with flow servo-valve

机译:带流量伺服阀的飞机防滑制动控制

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Pressure servo-valve is usually used for aircraft anti-skid braking system (ABS). It provides closed-loop pressure control via internal oil feedback. This structure complicates the manufacturing process and limits the adjustment of closed-loop parameters. It also increases the difficulty of system design and system test. In addition, local pressure closed-loop characteristic is coupled with long brake pipeline, which causes underdamped pressure closed-loop control. This paper builds aircraft hydraulic system model including pipeline model to analyze the reason why the output of pressure servo-valve is oscillating, and proposes an aircraft anti-skid braking control method with flow servo-valve. Then, the configuration of aircraft ABS using flow servo-valve is given. Simulations based on aircraft movement model are carried out to verify the anti-skid control performance of the system. This method needs pressure signal detected by pressure sensor. Using this method, better open loop features are achieved, and control algorithm is used easily. Software simulation comparisons between pressure servo-valve system and flow servo-valve system are also included to show advantages of using flow servo-valve. The results prove the feasibility and advantage of using flow servo-valve for anti-skid braking control.
机译:压力伺服阀通常用于飞机防滑制动系统(ABS)。它通过内部机油反馈提供闭环压力控制。这种结构使制造过程复杂化并限制了闭环参数的调整。这也增加了系统设计和系统测试的难度。此外,局部压力闭环特性与较长的制动管路耦合在一起,这会导致欠阻尼的压力闭环控制。本文建立了包括管道模型在内的飞机液压系统模型,分析了压力伺服阀输出振荡的原因,提出了一种带有流量伺服阀的飞机防滑制动控制方法。然后,给出了使用流量伺服阀的飞机ABS的配置。进行了基于飞机运动模型的仿真,以验证系统的防滑控制性能。该方法需要压力传感器检测到压力信号。使用这种方法,可以获得更好的开环特性,并且易于使用控制算法。还包括压力伺服阀系统和流量伺服阀系统之间的软件仿真比较,以显示使用流量伺服阀的优势。结果证明了使用流量伺服阀进行防滑制动控制的可行性和优势。

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