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作 者:Ibrar Afzal Noor ul Amin Zulfiqar Ahmad Abdulmohsen Algarni
机构地区:[1]Department of Computer Science and Information Technology,Hazara University,Mansehra,21300,Pakistan [2]Department of Computer Science,King Khalid University,Abha,61421,Saudi Arabia
出 处:《Computers, Materials & Continua》2025年第1期1377-1399,共23页计算机、材料和连续体(英文)
基 金:supported by the Deanship of Scientific Research and Graduate Studies at King Khalid University under research grant number(R.G.P.2/93/45).
摘 要:Thedeployment of the Internet of Things(IoT)with smart sensors has facilitated the emergence of fog computing as an important technology for delivering services to smart environments such as campuses,smart cities,and smart transportation systems.Fog computing tackles a range of challenges,including processing,storage,bandwidth,latency,and reliability,by locally distributing secure information through end nodes.Consisting of endpoints,fog nodes,and back-end cloud infrastructure,it provides advanced capabilities beyond traditional cloud computing.In smart environments,particularly within smart city transportation systems,the abundance of devices and nodes poses significant challenges related to power consumption and system reliability.To address the challenges of latency,energy consumption,and fault tolerance in these environments,this paper proposes a latency-aware,faulttolerant framework for resource scheduling and data management,referred to as the FORD framework,for smart cities in fog environments.This framework is designed to meet the demands of time-sensitive applications,such as those in smart transportation systems.The FORD framework incorporates latency-aware resource scheduling to optimize task execution in smart city environments,leveraging resources from both fog and cloud environments.Through simulation-based executions,tasks are allocated to the nearest available nodes with minimum latency.In the event of execution failure,a fault-tolerantmechanism is employed to ensure the successful completion of tasks.Upon successful execution,data is efficiently stored in the cloud data center,ensuring data integrity and reliability within the smart city ecosystem.
关 键 词:Fog computing smart cities smart transportation data management fault tolerance resource scheduling
分 类 号:U491[交通运输工程—交通运输规划与管理]
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