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一种去中心化混合计算的消费者认证框架,用于可靠的无人机送货即服务。

A decentralized hybrid computing consumer authentication framework for a reliable drone delivery as a service.

机构信息

University of Management and Technology, Sialkot, Pakistan.

Al-Khwarizmi Institute of Computer Science (KICS), University of Engineering and Technology (UET), Lahore, Pakistan.

出版信息

PLoS One. 2021 Apr 30;16(4):e0250737. doi: 10.1371/journal.pone.0250737. eCollection 2021.

Abstract

The thriving adoption of drones for delivering parcels, packages, medicines, etc., is surging with time. The application of drones for delivery services results in faster delivery, fuel-saving, and less energy consumption. Giant companies like Google, Amazon, Facebook, etc., are actively working on developing, testing, and improving drone-based delivery systems. So far, a lot of work has been done for improving the design, speed, operating range, security of the delivery drones, etc. However, very limited work has been done to ensure a complete and reliable last-mile delivery from the merchant's store to the hands of the actual customer. To ensure a complete and reliable last-mile delivery, a drone must authenticate the consumer before dropping the package. Therefore, in this work, we propose a consumer authentication (Consumer-Auth) hybrid computing framework for drone delivery as a service to make sure that the parcel is perfectly delivered to the intended customer. The proposed Consumer-Auth framework enables a drone to reach the exact destination by using the GPS coordinates of the customer autonomously. After reaching the exact location, the drone waits for the customer to come to the specific pinned location then it starts a two-factor consumer authentication process, i.e., one-time password (OTP) verification and face Recognition. The experimental results manifest the effectiveness of the proposed Consumer-Auth framework to ensure a complete and reliable drone-based last-mile delivery.

摘要

无人机在包裹、货物、药品等领域的应用越来越广泛,其投递效率更高、更节能、能耗更低。谷歌、亚马逊、脸书等巨头公司正在积极开发、测试和改进基于无人机的投递系统。目前,已经在改进无人机的设计、速度、操作范围、投递安全性等方面取得了大量的研究成果。然而,在确保从商家到实际客户手中的完整、可靠的最后一英里投递方面,所做的工作非常有限。为了确保完整、可靠的最后一英里投递,无人机在投递包裹之前必须对消费者进行身份验证。因此,在这项工作中,我们提出了一种用于无人机送货即服务的消费者认证(Consumer-Auth)混合计算框架,以确保包裹能完美地送到指定的客户手中。所提出的 Consumer-Auth 框架使无人机能够通过客户的 GPS 坐标自主到达精确的目的地。到达精确位置后,无人机等待客户到达特定的标记位置,然后开始进行双重身份验证过程,即一次性密码(OTP)验证和人脸识别。实验结果表明,所提出的 Consumer-Auth 框架能够有效确保基于无人机的最后一英里投递的完整性和可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef7a/8087081/02c5d816094b/pone.0250737.g001.jpg

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