Combined LKA and DYC Control for Electric Vehicle With a Domain-Centralized E/E Architecture Based on Software-Defined Networking

Wanke Cao, Zhiwen Zhu, Jinrui Nan*, Xudong Zhang, Yuan Zou*, Yan Cui

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

1 引用 (Scopus)

摘要

This study presents a methodology to improve combined lane-keeping assistance (LKA) and direct yaw-moment control (DYC) of distributed drive electric vehicles (EVs) running at a steady high speed, where a domain-centralized electronic and electrical (E/E) architecture based on software-defined networking (SDN) is adopted. It is well-known that domain-centralized E/E architecture has great advantages in terms of function integration, software upgrade, and wiring reduction. However, the increasing E/E function components, heterogeneous network topologies, multiple different protocols, and cross-domain communication behaviors would bring unknown cross-domain multihop information delays and negative system uncertainties, which may degrade the system's performance and even deteriorate the system's stability. To enjoy the advantages while dealing with the problems of the domain-centralized E/E system, a centralized SDN framework is introduced, which includes a strategy plane, control plane, and data plane, for the design of a combined LKA and DYC system. And in the control plane, a scheduling strategy based on the fractional-type basic period (FBP) method is developed to actively regulate information flow and restrain the cross-domain information delays. In the strategy plane, a hierarchical control scheme is adopted, where a delay-embedded LKA controller at the upper level is designed to actively make decisions, and at the lower level, an H -based linear quadratic regulator (H -LQR) controller is employed to ensure the stability of the motion control system against the local within-domain information delays. The results of the hardware-in-loop (HIL) test demonstrate that the loop delays have been reduced by 87.5% with the proposed SDN and the proposed methodology can effectively make the lane keeping well.

源语言英语
页(从-至)5439-5450
页数12
期刊IEEE Transactions on Transportation Electrification
10
3
DOI
出版状态已出版 - 2024

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