1.江苏大学电气信息工程学院, 212013,江苏镇江
2.江苏大学汽车工程研究院, 212013,江苏镇江
3.镇江市江苏大学工程技术研究院, 212009,江苏镇江
殷春芳(1976—),女,副教授,硕士生导师。
收稿:2024-11-21,
网络首发:2025-03-31,
纸质出版:2025-07-10
移动端阅览
殷春芳, 陈琰, 施德华, 等. 功率分流式混合动力系统有限时间预设性能协调控制[J]. 西安交通大学学报, 2025,59(7):214-224.
YIN Chunfang, CHEN Yan, SHI Dehua, et al. Finite-Time Prescribed Performance Coordinated Control for Power-Split Hybrid Electric Vehicle Systems[J]. Journal of Xi’an Jiaotong University, 2025, 59(7): 214-224.
殷春芳, 陈琰, 施德华, 等. 功率分流式混合动力系统有限时间预设性能协调控制[J]. 西安交通大学学报, 2025,59(7):214-224. DOI: 10.7652/xjtuxb202507021.
YIN Chunfang, CHEN Yan, SHI Dehua, et al. Finite-Time Prescribed Performance Coordinated Control for Power-Split Hybrid Electric Vehicle Systems[J]. Journal of Xi’an Jiaotong University, 2025, 59(7): 214-224. DOI: 10.7652/xjtuxb202507021.
针对功率分流式混合动力汽车传动系统瞬态模式切换过程低频扭振性能恶化问题,提出基于控制垒势函数的有限时间预设性能(FTPPC-CBFs)控制器的分层动态协调控制策略。对于该混联式构型,采用杠杆法建立系统不同模式切换阶段低频扭转振动动力学模型。在上层设计中,以离合器转速同步阶段作为主要研究阶段,基于一般预设性能(PPC)控制的设计思路,以模式切换性能指标构建预设性能函数,并引入控制垒势函数(CBFs)将预设性能约束问题转化为二次规划问题,形成控制垒势函数法预设性能(
PPC-CBFs)控制策略。下层基于有限时间加幂积分(FTAAPI)进行误差的快速收敛控制,与上层PPC-CBFs构成FTPPC-CBFs控制策略,并进行了硬件在环试验。结果表明:与FTAAPI控制、预设性能滑模控制(SMC-PPC)以及有限时间加幂积分预设性能(FTAAPI-PPC)控制相比,FTPPC-CBFs控制策略的冲击度分别降低了50.12%、37.42%、42.92%;在突加扰动影响下,控制垒势函数约束下的冲击度为9.99 m/s
3
,而没有该约束下的冲击度为13.76 m/s
3
,超出了设定的冲击度标准。硬件在环试验结果表明:对比其他3种控制策略,FTPPC-CBFs控制策略的冲击度分别降低了81.89%、77.30%、43.01%;突加扰动影响下,冲击度为9.71 m/s
3
,试验与仿真结论一致。
To address the deterioration of low-frequency torsional vibration performance during the transient mode-switching process in power-split hybrid electric vehicle transmission systems
a hierarchical dynamic coordinated control strategy based on finite-time prescribed performance control with control barrier functions (FTPPC-CBFs) is proposed. For this series-parallel hybrid configuration
the lever method is adopted to establish a low-frequency torsional vibration dynamic model for different mode-switching stages. In the upper-layer design
the clutch speed synchronization stage is selected as the primary research phase. Based on the design principles of general prescribed performance control (PPC)
a prescribed performance function is constructed using mode-switching performance metrics. Control Barrier Functions (CBFs) are introduced to transform the prescribed performance constraint problem into a quadratic programming problem
forming the Prescribed Performance Control with Control Barrier Functions (PPC-CBFs) strategy. In the lower layer
finite-time adaptive power integration (FTAAPI) is employed to achieve rapid error convergence control. The combination of the upper-layer PPC-CBFs and the lower-layer FTAAPI constitutes the FTPPC-CBFs control strategy
which is validated through hardware-in-the-loop (HIL) testing. Results show that
compared to FTAAPI control
sliding mode control (SMC) under ordinary PPC
and FTAAPI-PPC control
the FTPPC-CBFs strategy reduces the impact severity by 50.12%
37.42%
and 42.92%
respectively. Under sudden disturbance
conditions
the jerk with CBFs constraints is 9.99 m/s
3
whereas without CBFs
it reaches 13.76 m/s
3
-exceeding the prescribed jerk standard. HIL test results demonstrate that
compared to the other three control strategies
FTPPC-CBFs reduces jerk by 81.89%
77.30%
and 43.01%
respectively. Under sudden disturbances
the jerk is maintained at 9.71 m/s
3
confirming consistency between experimental and simulation conclusions.
SHI Dehua , LIU Sheng , CAI Yingfeng , et al . Pontryagin's minimum principle based fuzzy adaptive energy management for hybrid electric vehicle using real-time traffic information [J ] . Applied Energy , 2021 , 286 : 116467 .
韩清振 . 混合动力传动系统复杂动力学行为及其稳定性分析 [D ] . 镇江 : 江苏大学 , 2018 .
LÜ Chen , LIU Yahui , HU Xiaosong , et al . Simultaneous observation of hybrid states for cyber-physical systems: a case study of electric vehicle powertrain [J ] . IEEE Transactions on Cybernetics , 2018 , 48 ( 8 ): 2357 - 2367 .
KARIKOMI T , ITOU K , OKUBO T , et al . Development of the shaking vibration control for electric vehicles [C ] // 2006 SICE-ICASE International Joint Conference . Piscataway, NJ, USA : IEEE , 2006 : 2434 - 2439 .
LIU Hui , ZHANG Xun , CHEN Yinqi , et al . Active damping of driveline vibration in power-split hybrid vehicles based on model reference control [J ] . Control Engineering Practice , 2019 , 91 : 104085 .
王磊 . 一种混联式混合动力客车能量管理及模式切换协调控制研究 [D ] . 上海 : 上海交通大学 , 2013 .
WANG Lei , ZHANG Yong , SHU Jie , et al . Coordinated control of a series-parallel hybrid electric bus during EV/HEV mode transition [J ] . WSEAS Transactions on Circuits and Systems , 2012 , 11 ( 6 ): 198 - 209 .
GAO Aiyun , FU Zhumu , TAO Fazhan . Dynamic coordinated control based on sliding mode controller during mode switching with ICE starting for an HEV [J ] . IEEE Access , 2020 , 8 : 60428 - 60443 .
唐传茵 , 潘秉钰 , 李静红 , 等 . 基于模糊理论的并联混合动力汽车模式切换冲击控制 [J ] . 农业装备与车辆工程 , 2022 , 60 ( 9 ): 12 - 15 .
TANG Chuanyin , PAN Bingyu , LI Jinghong , et al . Impact control of mode switching for parallel hybrid electric vehicles based on fuzzy theory [J ] . Agricultural Equipment & Vehicle Engineering , 2022 , 60 ( 9 ): 12 - 15 .
LI Ke , WANG Yi , ZHANG Chenghui , et al . HEV mode transition strategy based on fuzzy sliding mode control [C ] // 2017 Chinese Automation Congress (CAC) . Piscataway, NJ, USA : IEEE , 2017 : 2517 - 2522 .
KONG Huifang , ZHANG Chong , WANG Hai , et al . Engine clutch engagement control for a parallel hybrid electric vehicle using sliding mode control scheme [J ] . Australian Journal of Electrical and Electronics Engineering , 2016 , 13 ( 4 ): 244 - 257 .
CHEN Li , XI Gang , SUN Jing . Torque coordination control during mode transition for a series-parallel hybrid electric vehicle [J ] . IEEE Transactions on Vehicular Technology , 2012 , 61 ( 7 ): 2936 - 2949 .
蒲明 , 周蓉 , 熊皑 . 一类非匹配不确定非线性系统快速加幂积分控制 [J ] . 控制与决策 , 2018 , 33 ( 6 ): 1017 - 1025 .
PU Ming , ZHOU Rong , XIONG Ai . Fast adding one power integrator control for a class of nonlinear systems with mismatched uncertainties [J ] . Control and Decision , 2018 , 33 ( 6 ): 1017 - 1025 .
ZHENG Shiqi , LI Wenjie . Fuzzy finite time control for switched systems via adding a barrier power integrator [J ] . IEEE Transactions on Cybernetics , 2019 , 49 ( 7 ): 2693 - 2706 .
魏才盛 , 罗建军 , 殷泽阳 . 航天器姿态预设性能控制方法综述 [J ] . 宇航学报 , 2019 , 40 ( 10 ): 1167 - 1176 .
WEI Caisheng , LUO Jianjun , YIN Zeyang . A review of prescribed performance control for spacecraft attitude [J ] . Journal of Astronautics , 2019 , 40 ( 10 ): 1167 - 1176 .
GAO Shigen , LI Mingjun , ZHENG Yue , et al . Expansive errors-based fuzzy adaptive prescribed performance control by residual approximation [J ] . IEEE Transactions on Fuzzy Systems , 2022 , 30 ( 7 ): 2736 - 2746 .
BECHLIOULIS C P , ROVITHAKIS G A . Adaptive control with guaranteed transient and steady state tracking error bounds for strict feedback systems [J ] . Automatica , 2009 , 45 ( 2 ): 532 - 538 .
童颖裔 , 董文瀚 , 贺磊 , 等 . 四旋翼无人机预设性能反步轨迹跟踪控制 [J ] . 飞行力学 , 2020 , 38 ( 6 ): 42 - 48 .
TONG Yingyi , DONG Wenhan , HE Lei , et al . Backstepping trajectory tracking control for quadrotor UAV with prescribed performance [J ] . Flight Dynamics , 2020 , 38 ( 6 ): 42 - 48 .
娜茜泰 , 高飞 , 翁智 , 等 . 非完整约束多智能体系统基于屏障控制函数的分布式协同控制 [J ] . 控制理论与应用 , 2022 , 39 ( 4 ): 663 - 670 .
NA Xitai , GAO Fei , WENG Zhi , et al . Cooperative control of nonholonomic multi-robot system using control barrier functions [J ] . Control Theory & Applications , 2022 , 39 ( 4 ): 663 - 670 .
袁亮亮 , 阎妍 , 于双和 , 等 . 基于屏障函数的无人水面艇自适应滑模容错轨迹跟踪控制 [J/OL ] . 控制工程 . ( 2023-09-12 ) [ 2024-7-15 ] . https://doi.org/10.14107/j.cnki.kzgc.JACA2022-84 https://doi.org/10.14107/j.cnki.kzgc.JACA2022-84 .
YUAN Liangliang , YAN Yan , YU Shuanghe , et al . Barrier function based adaptive sliding mode fault-tolerant trajectory tracking control of unmanned surface vehicle [J/OL ] . Control Engineering of China . ( 2023-09-12 ) [ 2024-7-15 ] . https://doi.org/10.14107/j.cnki.kzgc.JACA2022-84 https://doi.org/10.14107/j.cnki.kzgc.JACA2022-84 .
WANG Xinming , JIANG Yuan , YANG Jun , et al . Prescribed performance motion control: a control barrier function approach [J ] . IEEE Transactions on Industrial Electronics , 2024 , 71 ( 12 ): 16377 - 16387 .
AMES A D , XU Xiangru , GRIZZLE J W , et al . Control barrier function based quadratic programs for safety critical systems [J ] . IEEE Transactions on Automatic Control , 2017 , 62 ( 8 ): 3861 - 3876 .
孟昌琳 , 王保防 , 蔡明洁 . 考虑空间位置约束的四旋翼无人机预设性能控制 [J/OL ] . 控制工程 . ( 2024-05-14 ) [ 2024-6-21 ] . https://doi.org/10.14107/j.cnki.kzgc.20240039 https://doi.org/10.14107/j.cnki.kzgc.20240039 .
MENG Changlin , WANG Baofang , CAI Mingjie . Prescribed performance control of quadcopter UAV with position constraints [J/OL ] . Control Engineering of China . ( 2024-05-14 ) [ 2024-6-21 ] . https://doi.org/10.14107/j.cnki.kzgc.20240039 https://doi.org/10.14107/j.cnki.kzgc.20240039 .
PARSEGOV S , POLYAKOV A , SHCHERBAKOV P . Nonlinear fixed-time control protocol for uniform allocation of agents on a segment [C ] // 2012 IEEE 51st IEEE Conference on Decision and Control (CDC) . Piscataway, NJ, USA : IEEE , 2012 : 7732 - 7737 .
郭立书 , 葛安林 , 张泰 , 等 . 电控机械式自动变速器换挡过程控制 [J ] . 农业机械学报 , 2003 , 34 ( 2 ): 1 - 3 .
GUO Lishu , GE Anlin , ZHANG Tai , et al . AMT shift process control [J ] . Transactions of the Chinese Society for Agricultural Machinery , 2003 , 34 ( 2 ): 1 - 3 .
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