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Impact and capacity Assessment Framework for U-space Societal Acceptance (ImAFUSA)

Impact and capacity Assessment Framework for U-space Societal Acceptance (ImAFUSA)
U-space 社会接受度影响和能力评估框架 (ImAFUSA)
批准号:
10080939
负责人:
金额:
$13.18万
依托单位:
依托单位国家:
英国
项目类别:
EU-Funded
财政年份:
2023
资助国家:
英国
项目状态:
未结题
起止时间:
2023 至 --

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中文摘要
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英文摘要
ImAFUSA focuses on quantifying a variety of understudied factors influencing societal acceptance of UAM in urban, peri-urban and inter-urban areas, especially when these are deployed using U3 and U4 services. We aim to deliver an “Impact and capacity Assessment Framework for U-space Societal Acceptance” (ImAFUSA) to assist Local Authorities and other U-space stakeholders and users with the delivery of socially acceptable and beneficial UAM deployment in cities. The framework and its tools will provide insights in 3 major areas influencing societal acceptance: environmental impact (including noise, visual pollution and air quality), safety and socioeconomic impact (including affordability, accessibility, economic development, public space use and connectivity). In each area, innovative performance indicators will be described while mathematical formulas and algorithms will be developed to quantify them. Data on citizen noise perceptions, perceptions on visual pollution, safety perceptions and overall UAM acceptance will be collected during 3 immersive citizen experiences of UAM applications in the city of Athens, Greece. The usability of the developed indicators will be tested in a simulation environment simulating real future use cases with a varying volume and configuration of movements in U-space. Through the collaboration of the Partners and the Advisory Board, ImAFUSA facilitates the flow and co-creation of knowledge and 10 innovative tools between higher education (HEI), innovative SMEs, Local Authorities and National Aviation Authorities. ImAFUSA ´s developments benefit a variety of stakeholders including Local Authorities, policy-makers, U-space service providers, ATM/UTM planners and operators, drone manufacturers, environmental agencies and citizens above all.
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多跳无线 MESH 网络中 QoS 保障算法的研究设计和性能分析