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多传感器融合的自动驾驶汽车制动主动控制 被引量:8
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作者 李明杰 刘小飞 张跃进 《机械设计与制造》 北大核心 2023年第5期170-173,177,共5页
针对目前方法进行汽车制动主动控制时,存在控制时间长、丢包率高以及控制的误差大的问题,提出多传感器融合的自动驾驶汽车制动主动控制。该方法首先建立了数据的支撑裕矩阵,通过多传感器融合算法对汽车的传感器监测信息进行融合处理。... 针对目前方法进行汽车制动主动控制时,存在控制时间长、丢包率高以及控制的误差大的问题,提出多传感器融合的自动驾驶汽车制动主动控制。该方法首先建立了数据的支撑裕矩阵,通过多传感器融合算法对汽车的传感器监测信息进行融合处理。依据融合后的信息设计控制器,使用自适应遗传算法优化控制器参数。最后将监测信息输入优化的控制器中实现汽车制动主动控制。仿真测试结果表明,运用该方法主动控制自动驾驶汽车进行制动的时间较短且丢包率较低。 展开更多
关键词 多传感器 融合算法 自动驾驶汽车 制动主动控制
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Optimal design method for force in vibration control of multi-body system with quick startup and brake 被引量:3
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作者 唐华平 彭娅清 《Journal of Central South University of Technology》 EI 2005年第4期459-464,共6页
A kind of active vibration control method was presented through optimal design of driving load of multi-body system with quick startup and brake. Dynamical equation of multi-body system with quick startup and brake wa... A kind of active vibration control method was presented through optimal design of driving load of multi-body system with quick startup and brake. Dynamical equation of multi-body system with quick startup and brake was built, and mathematical model of representing vibration control was also set up according to the moving process from startup to brake. Then optimization vibration control model of system driving load was founded by applying theory of optimization control, which takes rigid body moving variable of braking moment as the known condition, and vibration control equation of multi-body system with quick startup and brake was converted into boundary value problem of differential equation. The transient control algorithm of vibration was put forward, which is the analysis basis for the further research. Theoretical analysis and calculation of numerical examples show that the optimal design method for the multi-body system driving load can decrease the vibration of system with duplication. 展开更多
关键词 vibrationl multi-body system active control
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Integrated yaw and rollover control based on differential braking for off-road vehicles with mechanical elastic wheel 被引量:2
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作者 LI Hai-qing ZHAO You-qun +1 位作者 LIN Fen XIAO Zhen 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第9期2354-2367,共14页
Aiming at the issue of yaw and rollover stability control for off-road vehicles with non-pneumatic mechanical elastic wheel(MEW),an integrated control system based on fuzzy differential braking is developed.By simplif... Aiming at the issue of yaw and rollover stability control for off-road vehicles with non-pneumatic mechanical elastic wheel(MEW),an integrated control system based on fuzzy differential braking is developed.By simplifying the structure of the MEW,a corresponding fitting brush tire model is constructed and its longitudinal and lateral tire force expressions are set up,respectively.Then,a nonlinear vehicle simulation model with MEW is established to validate the proposed control scheme based on Carsim.The designed yaw and rollover control system is a two-level structure with the upper additional moment controller,which utilizes a predictive load transfer ratio(PLTR)as the rollover index.In order to design the upper integrated control algorithm,fuzzy proportional-integral-derivative(PID)is adopted to coordinate the yaw and rollover control,simultaneously.And the lower control allocator realizes the additional moment to the vehicle by differential braking.Finally,a Carsim-simulink co-simulation model is constructed,and simulation results show that the integrated control system could improve the vehicle yaw and roll stability,and prevent rollover happening. 展开更多
关键词 integrated control rollover stability yaw stability active braking fuzzy control CO-SIMULATION mechanical elastic wheel
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Semi-active control of a vehicle suspension using magneto-rheological damper
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作者 蒋学争 王炅 胡红生 《Journal of Central South University》 SCIE EI CAS 2012年第7期1839-1845,共7页
A semi-active magneto-rheological (MR) damper was experimentally investigated and compared to an original equipment manufacturer (OEM) damper for a passenger vehicle, by using a quarter car models. A full-scale tw... A semi-active magneto-rheological (MR) damper was experimentally investigated and compared to an original equipment manufacturer (OEM) damper for a passenger vehicle, by using a quarter car models. A full-scale two-degree-of-freedom quarter car experimental set-up was constructed to study the vehicle suspension. On-off skyhook controller and Fuzzy-Lyapunov skyhook controller (FLSC) were employed to control the input current for MR damper so as to achieve the desired damping force. Tests were done to evaluate the ability of MR damper for controlling vehicle vibration. Test results show that the semi-active MR vehicle suspension vibration control system is feasible. In comparison with OEM damper, on-off and FLSC controlled MR dampers can effectively reduce the acceleration of vehicle sprtmg mass by about 15% and 24%, respectively. 展开更多
关键词 magneto-rheological damper vehicle suspension semi-active control
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