中国成都城市空中交通需求预测模型

Wenqiu Qu , Jie Huang , Chenglong Li , Xiaohan Liao
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摘要

遥控飞机系统、分布式电力推进系统和自动控制系统等新技术在电动垂直起降飞机(eVTOL)上的成功应用,促使城市空中交通(UAM)被频繁提及。城市空中交通(UAM)是一种新提出的交通模式,即使用电动垂直起降飞机在城市地区运送人员和货物,从而分担部分地面交通流量。UAM 定期运营的前提条件之一是其需求能够支持运营成本,因此有必要对 UAM 需求进行预测。我们根据四步法进行了 UAM 需求预测,重点是改进第三步的模式划分,并提出了一个基于 logit 模型的需求预测模型。该模型将嵌套对数(NL)模型与多叉对数(MNL)模型相结合,以解决不存在 UAM 共享率的问题。我们以中国成都为例,利用四步法重点预测了 2030 年的 UAM 交通需求。结果表明,在初期阶段,UAM 适合共享运行。在完全共享运营的情况下,距离每增加一公里,UAM 的共享率就会增加 0.73%。此外,在运送距离超过 15 公里时,UAM 比其他方式更具竞争力。最后,利用模拟得出的共享率分布和交通流模式,我们提出了成都 UAM 运营的优先路线。
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A demand forecasting model for urban air mobility in Chengdu, China

The successful application of new technologies such as remotely piloted aircraft systems, distributed electric propulsion systems, and automatic control systems on electric vertical take-off and landing(eVTOL) aircraft has prompted Urban Air Mobility (UAM) to be mentioned frequently. UAM is a newly raised transport mode of using eVTOL aircraft to transport people and cargo in urban areas, which is thought to share some of the traffic on the ground. One of the prerequisites for UAM to operate on a regular basis is that its demand can support the operating costs, so forecasting UAM demand is necessary. We conduct UAM demand forecasting based on the four-step method, focusing on improving the third-step modal split, and propose a demand forecasting model based on the logit model. The model combines a nested logit (NL) model with a multinomial logit (MNL) model to solve the problem of non-existent UAM sharing rates. We use Chengdu, China as an example, and focus on forecasting the UAM traffic demand in 2030 with the help of the four-step method. The results show that UAM is suitable for shared operation during the early stages. With a fully shared operation, the UAM share rate increases by 0.73% for every kilometer increase in distance. Moreover, UAM is more competitive than other modes for delivery distances exceeding 15 ​km. Finally, using the distributions of the share rate and traffic flow pattern from the simulation, we propose the routes that can be prioritized for UAM operations in Chengdu.

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