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Stabilization of traffic flow in optimal velocity model via delayed-feedback control

机译:通过延迟反馈控制在最佳速度模型中稳定交通流量

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Traffic jams may occur due to various reasons, such as traffic accidents, lane reductions and on-ramps. In order to suppress the traffic congestion in an optimal velocity traffic model without any driver's delay taken into account, a delayed-feedback control of both displacement and velocity differences is proposed in this study. By using the delay-independent stability criteria and the H_∞-norm, the delayed-feedback control can be determined to stabilize the unstable traffic flow and suppress the traffic jam. The numerical case studies are given to demonstrate and verify the new control method. Furthermore, a comparison is made between the new control method and the method proposed by Konishi et al. [K. Konishi, M. Hirai, H. Kokame, Decentralized delayed-feedback control of an optimal velocity traffic model, Eur. Phys. J. B 15 (2000) 715-722]. The results show that the new control method makes the traffic flow more stable and improves the control performance.
机译:交通堵塞可能由于各种原因而发生,例如交通事故,车道减少和坡道。为了在不考虑驾驶员延迟的情况下,在最佳速度交通模型中抑制交通拥堵,提出了一种位移和速度差的延迟反馈控制方法。通过使用独立于延迟的稳定性准则和H_∞范数,可以确定延迟反馈控制,以稳定不稳定的交通流量并抑制交通拥堵。数值算例研究证明和验证了新的控制方法。此外,在新的控制方法和Konishi等人提出的方法之间进行了比较。 [K. Konishi,M. Hirai,H. Kokame,最优速度交通模型的分散式延迟反馈控制,Eur。物理J.B 15(2000)715-722]。结果表明,新的控制方法使交通流量更加稳定,提高了控制性能。

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