λ-CoAP: An Internet of Things and Cloud Computing Integration Based on the Lambda Architecture and CoAP

被引:5
|
作者
Diaz, Manuel [1 ]
Martin, Cristian [1 ]
Rubio, Bartolome [1 ]
机构
[1] Univ Malaga, Dept Languages & Comp Sci, Boulevar Louis Pasteur 35, E-29071 Malaga, Spain
关键词
Internet of Things; Lambda Architecture; Coap middleware; Cloud computing;
D O I
10.1007/978-3-319-28910-6_18
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
The Internet of Things ( IoT) is an emerging technology that is growing continuously thanks to the number of devices deployed and data generated. Nevertheless, an upper layer to abstract the limitations of storing, processing, battery and networking is becoming a mandatory need in this field. Cloud Computing is an especially suitable technology that can supplement this field in the limitations mentioned. However, the current platforms are not prepared for querying large amounts of data with arbitrary functions in real-time, which are necessary requirements for real-time systems. This paper presents lambda-CoAP architecture, a novel paradigm not introduced yet to the best of our knowledge, which proposes an integration of Cloud Computing and Internet of Things through the Lambda Architecture ( LA) and a Constrained Application Protocol ( CoAP) middleware. The lambda-CoAP architecture has the purpose to query, process and analyze large amounts of IoT data with arbitrary functions in real-time. On the other hand, the CoAP middleware is a lightweight middleware that can be deployed in resource constrained devices and allows the way of the IoT towards the Web of Things. Moreover, the lambda-CoAP also contains a set of components with well defined interfaces for querying, managing, and actuating over the system.
引用
收藏
页码:195 / 206
页数:12
相关论文
共 50 条
  • [1] Californium: Scalable Cloud Services for the Internet of Things with CoAP
    Kovatsch, Matthias
    Lanter, Martin
    Shelby, Zach
    [J]. 2014 INTERNATIONAL CONFERENCE ON THE INTERNET OF THINGS (IOT), 2014, : 1 - 6
  • [2] CoAP flow signatures for the Internet of Things
    Canuto, Luis
    Santos, Leonel
    Vieira, Leandro
    Goncalves, Ramiro
    Rabadao, Carlos
    [J]. 2019 14TH IBERIAN CONFERENCE ON INFORMATION SYSTEMS AND TECHNOLOGIES (CISTI), 2019,
  • [3] CoAP Congestion Control for the Internet of Things
    Betzler, August
    Gomez, Carles
    Demirkol, Ilker
    Paradells, Josep
    [J]. IEEE COMMUNICATIONS MAGAZINE, 2016, 54 (07) : 154 - 160
  • [4] CoAP-Based Mobility Management for the Internet of Things
    Chun, Seung-Man
    Kim, Hyun-Su
    Park, Jong-Tae
    [J]. SENSORS, 2015, 15 (07) : 16060 - 16082
  • [5] Model of Integration of Embedded Systems via CoAP Protocol of Internet of Things
    Peniak, Peter
    Franekova, Maria
    [J]. 2016 21ST INTERNATIONAL CONFERENCE ON APPLIED ELECTRONICS (AE), 2016, : 201 - 204
  • [6] Enabling CoAP into the Swarm: A Transparent Interception CoAP-HTTP Proxy for the Internet of Things
    Esquiagola, J.
    Costa, L.
    Calcina, P.
    Zuffo, M.
    [J]. 2017 GLOBAL INTERNET OF THINGS SUMMIT (GIOTS 2017), 2017, : 59 - 64
  • [7] Hybrid CoAP-based resource discovery for the Internet of Things
    Badis Djamaa
    Ali Yachir
    Mark Richardson
    [J]. Journal of Ambient Intelligence and Humanized Computing, 2017, 8 : 357 - 372
  • [8] Automated Mashup of CoAP Services on the Internet of Things
    Jin, Xiongnan
    Hur, Kangho
    Chun, Sejin
    Kim, Minjung
    Lee, Kyong-Ho
    [J]. 2015 IEEE 2ND WORLD FORUM ON INTERNET OF THINGS (WF-IOT), 2015, : 262 - 267
  • [9] An Analysis of CoAP as Transport in an Internet of Things Environment
    Coetzee, Louis
    Oosthuizen, Dawid
    Mkhize, Buhle
    [J]. 2018 IST-AFRICA WEEK CONFERENCE (IST-AFRICA), 2018,
  • [10] A Systematic Survey on Congestion Mechanisms of CoAP Based Internet of Things
    Pramanik, Ananya
    Luhach, Ashish Kr.
    Batra, Isha
    Singh, Upasana
    [J]. ADVANCED INFORMATICS FOR COMPUTING RESEARCH, ICAICR 2017, 2017, 712 : 306 - 317