Implementation of Grid System over Li-Fi Network

被引:0
|
作者
Dembla, Vishesh [1 ]
Joglekar, Bela [1 ]
Chaudhari, Rohan [1 ]
Chhabra, Saurabh [1 ]
机构
[1] Maharashtra Inst Technol, Dept Informat Technol, Pune, Maharashtra, India
关键词
li-fi; visible light communication; grid systems; distributed computing;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Applications like economic forecasting and seismic analysis require tremendous computation power of the order that can only be provided by powerful computers. Developing software for such complex application requires an uninterrupted access to these resources which is not always easy to acquire for students. These high-end computers are expensive and are not affordable for students. A typical computer lab has enough resources for such high level of computing. However, the resources are dispersed over multiple individual systems. Grid-computing enables the coordinated use of resources to solve problems that arise in dynamic, distributed organizations. Connecting these individual machines in a grid architecture is not enough. It should be explicitly made sure that the latency of communication is low apart from other factors. A fiber optic cable is one solution to the problem. However, it comes with its own drawbacks. In this paper, an idea of building a virtual grid over a Li-Fi network and deploying resources by pooling has been suggested. This pool of resources is controlled by an autonomous server that administrates the working of the Grid. This server to keep track of various parameters like storage space and processing power pertaining to the pooled resources and tasks deployed on the system. It makes use of Li-Fi to establish the communication links at a low cost and higher speeds, thus leading to easy deployment and enhanced functionality of existing lab infrastructure.
引用
收藏
页数:5
相关论文
共 50 条
  • [41] Deployment of Li-Fi in indoor positioning systems
    Panda B.
    Beria H.
    Pradhan C.
    [J]. International Journal of Information Technology, 2021, 13 (1) : 123 - 130
  • [42] Li-Fi Based Handoff Technique in VANET
    Kalita, Chinmoy Sailendra
    Barooah, Maushumi
    [J]. 2020 INTERNATIONAL CONFERENCE ON COMPUTATIONAL PERFORMANCE EVALUATION (COMPE-2020), 2020, : 654 - 658
  • [43] Application of Li-Fi technique in underwater communication
    Seetharaman, R.
    Tharun, M.
    Mole, S. S. Sreeja
    Anandan, K.
    [J]. MATERIALS TODAY-PROCEEDINGS, 2022, 51 : 2249 - 2253
  • [44] Li-Fi: Light fidelity-a survey
    Bao, Xu
    Yu, Guanding
    Dai, Jisheng
    Zhu, Xiaorong
    [J]. WIRELESS NETWORKS, 2015, 21 (06) : 1879 - 1889
  • [45] Li-Fi离我们还有多远?
    西北
    [J]. 少年电脑世界, 2016, (04) : 7 - 9
  • [46] Smart Museum Using Li-Fi Technology
    Kavitha, T.
    Reena, C. R. Angel
    [J]. SECOND INTERNATIONAL CONFERENCE ON COMPUTER NETWORKS AND COMMUNICATION TECHNOLOGIES, ICCNCT 2019, 2020, 44 : 936 - 942
  • [47] Methodology for the Implementation of QoS in Li-Fi Networks in 5th Generation Environments
    Paternina Duran, Jesus Manuel
    Salcedo Parra, Octavio Jose
    Paternina Anaya, Jose de Jesus
    [J]. UBIQUITOUS NETWORKING, UNET 2018, 2018, 11277 : 283 - 294
  • [48] Estonian firm pushes 'Li-Fi' technology
    Cartlidge, Edwin
    [J]. PHYSICS WORLD, 2016, 29 (01) : 9 - 9
  • [49] 有光就有网络——Li-Fi
    张小南
    曹磊
    瞿云兰
    [J]. 小学科技, 2014, (11) : 2 - 3
  • [50] LED Beam Steering for Li-Fi Communications
    Mekhiel, Christopher
    Fernando, Xavier
    [J]. 2016 IEEE 21ST INTERNATIONAL WORKSHOP ON COMPUTER AIDED MODELLING AND DESIGN OF COMMUNICATION LINKS AND NETWORKS (CAMAD), 2016, : 237 - 241