Sideslip Angle Based Variable Slip Ratio Limiter for Direct Yaw Moment Control of Two-Input-Two-Output Motor Vehicles
This paper presents a new direct yaw moment control system for electric vehicles with two-input-two-output motor drives. The proposed system consists of two layers: yaw-rate control in the outer and driving force control in the inner. To optimize the driving force generation capability of the left a...
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Published in | 2024 IEEE International Conference on Advanced Intelligent Mechatronics (AIM) pp. 1476 - 1481 |
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Main Authors | , , , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
15.07.2024
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Abstract | This paper presents a new direct yaw moment control system for electric vehicles with two-input-two-output motor drives. The proposed system consists of two layers: yaw-rate control in the outer and driving force control in the inner. To optimize the driving force generation capability of the left and right tires during turning, a novel variable slip ratio limiter (VSRL) is developed for the driving force control (DFC). The VSRL algorithm is derived by analyzing the brush model of tire force characteristics concerning the sideslip angle of the vehicle body. The proposed system was evaluated using an actual electric vehicle prototype developed by Mitsubishi Motors. The experiments were conducted under extremely harsh conditions, such as sudden acceleration while cornering on the ice surface. Compared with the existing methods with conventional VSRL, the proposed system successfully enhances the yaw-rate tracking performance. |
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AbstractList | This paper presents a new direct yaw moment control system for electric vehicles with two-input-two-output motor drives. The proposed system consists of two layers: yaw-rate control in the outer and driving force control in the inner. To optimize the driving force generation capability of the left and right tires during turning, a novel variable slip ratio limiter (VSRL) is developed for the driving force control (DFC). The VSRL algorithm is derived by analyzing the brush model of tire force characteristics concerning the sideslip angle of the vehicle body. The proposed system was evaluated using an actual electric vehicle prototype developed by Mitsubishi Motors. The experiments were conducted under extremely harsh conditions, such as sudden acceleration while cornering on the ice surface. Compared with the existing methods with conventional VSRL, the proposed system successfully enhances the yaw-rate tracking performance. |
Author | Sawase, Kaoru Sato, Tona Ueno, Takumi Nguyen, Binh Minh Toyota, Hiromitsu Fujimoto, Hiroshi |
Author_xml | – sequence: 1 givenname: Tona surname: Sato fullname: Sato, Tona organization: The University of Tokyo, 5-1-5 Kashiwanoha,Graduate School of Frontier Science,Kashiwa,Chiba,Japan,277-8561 – sequence: 2 givenname: Takumi surname: Ueno fullname: Ueno, Takumi organization: The University of Tokyo, 5-1-5 Kashiwanoha,Graduate School of Frontier Science,Kashiwa,Chiba,Japan,277-8561 – sequence: 3 givenname: Binh Minh surname: Nguyen fullname: Nguyen, Binh Minh organization: The University of Tokyo, 5-1-5 Kashiwanoha,Graduate School of Frontier Science,Kashiwa,Chiba,Japan,277-8561 – sequence: 4 givenname: Hiroshi surname: Fujimoto fullname: Fujimoto, Hiroshi email: fujimoto@k.u-tokyo.ac.jp organization: The University of Tokyo, 5-1-5 Kashiwanoha,Graduate School of Frontier Science,Kashiwa,Chiba,Japan,277-8561 – sequence: 5 givenname: Hiromitsu surname: Toyota fullname: Toyota, Hiromitsu organization: The University of Tokyo, 5-1-5 Kashiwanoha,Graduate School of Frontier Science,Kashiwa,Chiba,Japan,277-8561 – sequence: 6 givenname: Kaoru surname: Sawase fullname: Sawase, Kaoru organization: MITSUBISHI MOTORS CORPORATION, 1, Nakashinkiri, Hashimecho,Okazaki,Aichi,Japan,444-8501 |
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Snippet | This paper presents a new direct yaw moment control system for electric vehicles with two-input-two-output motor drives. The proposed system consists of two... |
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Title | Sideslip Angle Based Variable Slip Ratio Limiter for Direct Yaw Moment Control of Two-Input-Two-Output Motor Vehicles |
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