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Anti-slip Control Research of Brake System with Laser Additive Manufacturing Brake Disc

机译:激光增材制造制动盘的制动系统防滑控制研究

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The material difference of laser additive manufacturing brake discs and traditional brake discs result in inconsistent friction coefficients of contact surfaces of the brake discs and the brake shoes during the braking process. The sliding control strategy needs to be optimized to meet the requirements of new brake discs. The model of EP2002 brake system pneumatic valve unit (PVU) is built up in simulation software of AMESim. And the correctness of the model is verified through the simulation of service brake and emergency brake. The dynamics model of train is built in MATLAB/Simulink environment, and anti-slip control logic is compiled. Considering the friction characteristics of laser additive manufacturing brake discs, anti-slip control logic was developed. To verify the validity of anti-slip logic co-simulation is conducted between AMESim and MATLAB/Simulink. The simulation results of service brake and emergency brake show that the PVU model of EP2002 reacts consistently with real systems, which verifies the correctness of the model. The simulation results of anti-slip control show that a stable performance of anti-slip is achieved even continuous slip occurred, which means that the designed anti-slip control logic meets the control requirements. The research results provide an effective model for the actual design of the train braking system and solving of failures.
机译:激光增材制造的制动盘与传统制动盘的材料差异导致制动过程中制动盘和制动蹄的接触表面的摩擦系数不一致。需要优化滑动控制策略,以满足新制动盘的要求。在AMESim仿真软件中建立了EP2002制动系统气动阀单元(PVU)的模型。通过行车制动和紧急制动的仿真验证了模型的正确性。在MATLAB / Simulink环境下建立了列车动力学模型,并编制了防滑控制逻辑。考虑到激光增材制造制动盘的摩擦特性,开发了防滑控制逻辑。为了验证防滑逻辑的有效性,在AMESim和MATLAB / Simulink之间进行了联合仿真。行车制动器和紧急制动器的仿真结果表明,EP2002的PVU模型与实际系统反应一致,验证了模型的正确性。防滑控制的仿真结果表明,即使连续发生滑动,也能达到稳定的防滑性能,这表明所设计的防滑控制逻辑满足了控制要求。研究结果为列车制动系统的实际设计和故障的解决提供了有效的模型。

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