Traffic noise feedback in agent-based Integrated Land-Use/Transport Models

IF 1.6 4区 工程技术 Q4 TRANSPORTATION
Nico Kuehnel, Dominik Ziemke, R. Moeckel
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引用次数: 6

Abstract

Road traffic is a common source of negative environmental externalities such as noise and air pollution. While existing transport models are capable of accurately representing environmental stressors of road traffic, this is less true for integrated land-use/transport models. So-called land-use-transport-environment models aim to integrate environmental impacts. However, the environmental implications are often analyzed as an output of the model only, even though research suggests that the environment itself can have an impact on land use. The few existing models that actually introduce a feedback between land-use and environment fall back on aggregated zonal values. This paper presents a proof of concept for an integrated, microscopic and agent-based approach for a feedback loop between transport-related noise emissions and land-use. The results show that the microscopic link between the submodels is operational and fine-grained analysis by different types of agents is possible. It is shown that high-income households react differently to noise exposure when compared low-income households. The presented approach opens new possibilities for analyzing and understanding noise abatement policies as well as issues of environmental equity. The methodology can be transferred to include air pollutant emissions in the future.
基于agent的土地利用/运输综合模型中的交通噪声反馈
道路交通是噪音和空气污染等负面环境外部因素的常见来源。虽然现有的交通模型能够准确地表示道路交通的环境压力,但综合土地利用/交通模型则不然。所谓的土地利用-运输环境模型旨在整合环境影响。然而,环境影响通常只作为模型的输出进行分析,尽管研究表明环境本身会对土地利用产生影响。现有的少数几个模型实际上引入了土地使用和环境之间的反馈,这些模型依赖于区域总值。本文提出了一种综合的、微观的、基于主体的方法的概念证明,用于交通相关噪声排放和土地利用之间的反馈回路。结果表明,子模型之间的微观联系是可操作的,不同类型的代理可以进行细粒度分析。研究表明,与低收入家庭相比,高收入家庭对噪声暴露的反应不同。所提出的方法为分析和理解降噪政策以及环境公平问题开辟了新的可能性。该方法可以在未来转移到包括空气污染物排放。
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来源期刊
CiteScore
3.40
自引率
5.30%
发文量
34
审稿时长
30 weeks
期刊介绍: The Journal of Transport and Land Usepublishes original interdisciplinary papers on the interaction of transport and land use. Domains include: engineering, planning, modeling, behavior, economics, geography, regional science, sociology, architecture and design, network science, and complex systems. Papers reporting innovative methodologies, original data, and new empirical findings are especially encouraged.
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