{"title":"An Access Control Framework for Cloud-Enabled Wearable Internet of Things","authors":"Smriti Bhatt, Farhan Patwa, R. Sandhu","doi":"10.1109/CIC.2017.00050","DOIUrl":null,"url":null,"abstract":"Internet of Things (IoT) has become a pervasive and diverse concept in recent years. IoT applications and services have given rise to a number of sub-fields in the IoT space. Wearable technology, with its particular set of characteristics and application domains, has formed a rapidly growing sub-field of IoT, viz., Wearable Internet of Things (WIoT). While numerous wearable devices are available in the market today, security and privacy are key factors for wide adoption of WIoT. Wearable devices are resource constrained by nature with limited storage, power, and computation. A Cloud-Enabled IoT (CEIoT) architecture, a dominant paradigm currently shaping the industry and suggested by many researchers, needs to be adopted for WIoT. In this paper, we develop an access control framework for cloud-enabled WIoT (CEWIoT) based on the Access Control Oriented (ACO) architecture recently developed for CEIoT in general. We first enhance the ACO architecture from the perspective of WIoT by adding an Object Abstraction Layer, and then develop our framework based on interactions between different layers of this enhanced ACO architecture. We present a general classification and taxonomy of IoT devices, along with brief introduction to various application domains of IoT and WIoT. We then present a remote health and fitness monitoring use case to illustrate different access control aspects of our framework and outline its possible enforcement in a commercial CEIoT platform, viz., AWS IoT. Finally, we discuss the objectives of our access control framework and relevant open problems.","PeriodicalId":156843,"journal":{"name":"2017 IEEE 3rd International Conference on Collaboration and Internet Computing (CIC)","volume":"63 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2017-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"46","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2017 IEEE 3rd International Conference on Collaboration and Internet Computing (CIC)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/CIC.2017.00050","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 46
Abstract
Internet of Things (IoT) has become a pervasive and diverse concept in recent years. IoT applications and services have given rise to a number of sub-fields in the IoT space. Wearable technology, with its particular set of characteristics and application domains, has formed a rapidly growing sub-field of IoT, viz., Wearable Internet of Things (WIoT). While numerous wearable devices are available in the market today, security and privacy are key factors for wide adoption of WIoT. Wearable devices are resource constrained by nature with limited storage, power, and computation. A Cloud-Enabled IoT (CEIoT) architecture, a dominant paradigm currently shaping the industry and suggested by many researchers, needs to be adopted for WIoT. In this paper, we develop an access control framework for cloud-enabled WIoT (CEWIoT) based on the Access Control Oriented (ACO) architecture recently developed for CEIoT in general. We first enhance the ACO architecture from the perspective of WIoT by adding an Object Abstraction Layer, and then develop our framework based on interactions between different layers of this enhanced ACO architecture. We present a general classification and taxonomy of IoT devices, along with brief introduction to various application domains of IoT and WIoT. We then present a remote health and fitness monitoring use case to illustrate different access control aspects of our framework and outline its possible enforcement in a commercial CEIoT platform, viz., AWS IoT. Finally, we discuss the objectives of our access control framework and relevant open problems.
近年来,物联网(IoT)已经成为一个普及和多样化的概念。物联网应用和服务在物联网领域产生了许多子领域。可穿戴技术以其独特的特点和应用领域,形成了一个快速发展的物联网子领域——可穿戴物联网(Wearable Internet of Things, WIoT)。虽然当今市场上有许多可穿戴设备,但安全和隐私是广泛采用物联网的关键因素。可穿戴设备受到自然资源的限制,存储、功率和计算能力有限。云支持的物联网(CEIoT)架构是目前塑造行业的主导范式,也是许多研究人员提出的,需要采用云支持的物联网架构。在本文中,我们开发了一个基于面向访问控制(ACO)架构的基于云的WIoT (CEWIoT)的访问控制框架。我们首先从WIoT的角度对蚁群管理体系结构进行了增强,增加了一个对象抽象层,然后基于该增强蚁群管理体系结构各层之间的交互开发了我们的框架。我们介绍了物联网设备的一般分类和分类,并简要介绍了物联网和WIoT的各种应用领域。然后,我们提出了一个远程健康和健身监控用例,以说明我们框架的不同访问控制方面,并概述其在商业CEIoT平台(即AWS物联网)中的可能实施。最后,我们讨论了我们的访问控制框架的目标和相关的开放问题。