• Title/Summary/Keyword: 브로커 네트워크

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Real-Time Monitoring System Based on IPv6 over BLE (BLE 상의 IPv6 기반의 실시간 모니터링 시스템)

  • Kim, Seong-Woo
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.21 no.2
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    • pp.309-315
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    • 2017
  • Recently it has drawn much attention on the technologies about Internet of Things (IoT) which connects objects with constrained resource and heterogenous communication module in order to communicate information via internet. We propose a real-time sensor monitoring system based on IPv6 over Bluetooth Low Energy (BLE), which is included in Bluetooth 4.2 Specification. Since this system uses a publish-subsribe based IoT protocol, so called Message Queueing Telemetry Transport (MQTT), neither transforming network data nor any proxy server is needed in order to transmit data. Through the web client connected to this system, you can monitor sensor data sent by BLE device in real-time, intermediated via MQTT broker and then delivered to the client via HTTP and websocket protocol. In this paper we evaluated network capacity and availability of the implemented test platform. Thus by using this system it is possible to make development cost low and to construct IoT network with heterogenous devices easily.

Integrity Guarantee System in IoT Virtual Environment Platform: Through Hyperedfger Indy and MQTT (IoT 가상환경 플랫폼에서의 무결성 보장 시스템:Hyperledger Indy와 MQTT를 통하여)

  • Yoosung Hong;Geun-Hyung Kim
    • Smart Media Journal
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    • v.13 no.4
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    • pp.76-85
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    • 2024
  • In this paper, we propose a system that improves the data integrity of IoT(Internet of Things) devices in the virtual environment by combining Hyperledger Indy and MQTT(Message Queuing Telemetry Transport). The system complements the limitations of the centralized system by realizing a DPKI(Decentralized Public Key Infrastructure) structure that utilizes a distributed network in publish-subscribe(pub/sub) pattern communication. Digital signature technology was applied to ensure the data integrity of IoT devices and communication scenarios between the four core components of the client, IoT device, broker, and blockchain, as well as a topic structure using a decentralized identifier to ensure safety in the virtual environment. We present a systematic method for transparent data exchange. To prove the performance of the proposed system, this paper conducted experiments on four scenarios and evaluated communication performance in a virtual environment. The experimental results confirmed that the proposed system provides a reliable IoT data communication structure in a virtual environment.