Davis L C
Physics Department, University of Michigan, Ann Arbor, 48109, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2004 Jun;69(6 Pt 2):066110. doi: 10.1103/PhysRevE.69.066110. Epub 2004 Jun 4.
The flow of traffic composed of vehicles that are equipped with adaptive cruise control (ACC) is studied using simulations. The ACC vehicles are modeled by a linear dynamical equation that has string stability. In platoons of all ACC vehicles, perturbations due to changes in the lead vehicle's velocity do not cause jams. Simulations of merging flows near an onramp show that if the total incoming rate does not exceed the capacity of the single outgoing lane, free flow is maintained. With larger incoming flows, a state closely related to the synchronized flow phase found in manually driven vehicular traffic has been observed. This state, however, should not be considered congested because the flow is maximal for the density. Traffic composed of random sequences of ACC vehicles and manual vehicles has also been studied. At high speeds (approximately 30 m/s ) jamming occurs for concentrations of ACC vehicles of 10% or less. At 20% no jams are formed. The formation of jams is sensitive to the sequence of vehicles (ACC or manual). At lower speeds (approximately 15 m/s ), no critical concentration for complete jam suppression is found. Rather, the average velocity in the pseudojam region increases with increasing ACC concentration. Mixing 50% ACC vehicles randomly with manually driven vehicles on the primary lane in onramp simulations shows only modestly reduced travel times and larger flow rates.
通过模拟研究了由配备自适应巡航控制(ACC)的车辆组成的交通流。ACC车辆由具有串稳定性的线性动力学方程建模。在所有ACC车辆组成的车队中,前车速度变化引起的扰动不会导致拥堵。匝道附近合流的模拟表明,如果总进入率不超过单条出口车道的通行能力,则能保持自由流。当进入流量较大时,观察到一种与人工驾驶车辆交通中发现的同步流阶段密切相关的状态。然而,这种状态不应被视为拥堵,因为对于该密度而言流量是最大的。还研究了由ACC车辆和人工驾驶车辆的随机序列组成的交通流。在高速(约30米/秒)时,ACC车辆浓度为10%或更低时会发生拥堵。浓度为20%时不会形成拥堵。拥堵的形成对车辆序列(ACC或人工驾驶)很敏感。在较低速度(约15米/秒)时,未发现完全抑制拥堵的临界浓度。相反,伪拥堵区域的平均速度随着ACC浓度的增加而增加。在匝道模拟中,在主车道上随机混合50%的ACC车辆和人工驾驶车辆,结果显示出行时间仅略有减少,流量有所增加。