• Title/Summary/Keyword: Embedded IoT device

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Scientometric Analysis for Internet of Things of Service Concentration and Smart Device of Next-Generation (서비스 중심의 IoT와 차세대 Smart Device에 대한 계량 정보 분석)

  • Shon, Young-Woo
    • The Journal of the Korea institute of electronic communication sciences
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    • v.10 no.6
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    • pp.721-728
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    • 2015
  • IOT has evolved from the internet for human oriented, therefore our life is more advanced growth smartly. IoT is the network of physical objects or things embedded with electronics, software, sensors and connectivity to enable it to achieve greater value and service by exchanging data with the manufacturer, operator or other connected devices. Until now many researches have been studied for centering keyword for detecting emerging technology of future and scientometric analysis among the papers. This paper propose searching method of emerging technology for the IOT (internet of things) and smart device which are recently interesting area via dynamic analysis for keyword mapping.

A Study of Design for Additive Manufacturing Method for Part Consolidation to Redesign IoT Device (IoT 기기 재설계를 위한 적층제조를 활용한 부품병합 설계 방법에 대한 연구)

  • Kim, Samyeon
    • Journal of Internet of Things and Convergence
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    • v.8 no.2
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    • pp.55-59
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    • 2022
  • Recently, IoT technology has great attention and plays a key role in 4th industrial revolution in order to design customized products and services. Additive Manufacturing (AM) is applied to fabricate IoT sensor directly or IoT sensor embedded structure. Also, design methods for AM are developing to consolidate various parts of IoT devices. Part consolidation leads to assembly time and cost reduction, reliability improvement, and lightweight. Therefore, a design method was proposed to guide designers to consolidate parts. The design method helps designers to define product architecture that consists of functions and function-part relations. The product architecture is converted to a network graph and then Girvan Newman algorithm is applied to cluster the graph network. Parts in clusters are candidates for part consolidation. To demonstrate the usefulness of the proposed design method, a case study was performed with e-bike fabricated by additive manufacturing.

Multifunctional Interface Board for the implementation of IoT (사물 인터넷을 위한 다기능 인터페이스 보드 구현)

  • kim, Ka-Eul;Oh, Kang-Jin;Jo, Su-Min;Kwoen, Oh-Jun;Kim, Sun-Hyeng
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.10a
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    • pp.530-532
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    • 2015
  • Nowadays, it is animately studied on IoT(Internet of Things) on the strength of development of the short-range communications technology and smart device. In this paper, it made a interface board which is capable of short-range communications networks based on embedded linux and Android OS (operating system). and we also made a IoT sensor module and device driver module. This devices are easily separated and changed and also simply embodied in IoT, and It was implemented using the Android app that allows you to control the sensors.

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A Framework for Time Awareness System in the Internet of Things (사물인터넷에서 시각 정보 관리 체계)

  • Hwang, Soyoung
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.20 no.6
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    • pp.1069-1073
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    • 2016
  • The Internet of Things (IoT) is the interconnection of uniquely identifiable embedded computing devices within the existing Internet infrastructure. IoT is expected to offer advanced connectivity of devices, systems, and services that goes beyond machine-to-machine communications and covers a variety of protocols, domains, and applications. Key system-level features that IoT needs to support can be summarized as device heterogeneity, scalability, ubiquitous data exchange through proximity wireless technologies, energy optimized solutions, localization and tracking capabilities, self-organization capabilities, semantic interoperability and data management, embedded security and privacy-preserving mechanisms. Time information is a critical piece of infrastructure for any distributed system. Time information and time synchronization are also fundamental building blocks in the IoT. The IoT requires new paradigms for combining time and data. This paper reviews conventional time keeping mechanisms in the Internet and presents issues to be considered for combining time and data in the IoT.

Wireless Information Transfer System for Blind People (시각장애인들을 위한 무선 정보 전송 시스템)

  • Gil, Ki-Jong;Son, Byoung-June;Shin, Yong-Bin;Kim, Dong-woo;Lee, Su-Jin;Kim, Jong-Wook
    • IEMEK Journal of Embedded Systems and Applications
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    • v.12 no.1
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    • pp.63-69
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    • 2017
  • This paper proposes a new device for a portable braille device using Atmega128 and solenoid magnets. This braille device is composed of three panels, and each panel has six solenoid dots. This device aims to help the disabled people who cannot communicate with others. As an application example, when a disabled people approach a traffic light, it sends a message via Bluetooth to the proposed device letting people recognize a dangerous area. The message converted from the database is based on standard braille chart.

Implementation of Safety management broadcasting system for IoT based in IP PBX (IP PBX기반 안전관리 IoT 방송 시스템 구현)

  • Kim, Sam-Taek
    • Journal of the Korea Convergence Society
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    • v.10 no.8
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    • pp.9-14
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    • 2019
  • Currently, with the success of 5G commercialization, a server system that integrates various Internet public safety services should be developed. In this paper, we developed a public safety integrated server, which is an IoT platform connecting IoT device and IoT gateway based on IP PBX. This server is based on embedded OS and various IoT services are executed in one system and call processing / broadcasting server function that processes emergency call and emergency broadcasting in public places is built in. This system collects IoT sensor data and emergency bell information and automatically sends out emergency alarms, emergency evacuation broadcasts, etc. at an accident site in an emergency situation, and transmits the daily information to the upper IoT service server, Provide public safety management services.

Software Code Attestation for IoT Devices by Bluetooth Low Energy (저전력 블루투스를 통한 사물 인터넷 장치의 소프트웨어적인 코드 검증)

  • Kim, GeunYoung;Kang, Jeonil;Nyang, DaeHun;Lee, KyungHee
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.26 no.5
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    • pp.1211-1221
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    • 2016
  • In IoT environment, making sure of trust of IoT devices is the most important one than others. The security threats of nowadays almost stay at exposure or tampering of information. However, if human life is strongly connected to the Internet by IoT devices, the security threats will probably target human directly. In case of devices, authentication is verified using the device-known private key. However, if attacker can modify the device physically, knowing the private key cannot be the evidence of trust any more. Thus, we need stronger verification method like code attestation. In this paper, we use software-based code attestation for efficiency. We also suggest secure code attestation method against copy of original code and implement it on embedded device and analyze its performance.

EXCUTE REAL-TIME PROCESSING IN RTOS ON 8BIT MCU WITH TEMP AND HUMIDITY SENSOR

  • Kim, Ki-Su;Lee, Jong-Chan
    • Journal of the Korea Society of Computer and Information
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    • v.24 no.11
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    • pp.21-27
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    • 2019
  • Recently, embedded systems have been introduced in various fields such as smart factories, industrial drones, and medical robots. Since sensor data collection and IoT functions for machine learning and big data processing are essential in embedded systems, it is essential to port the operating system that is suitable for the function requirements. However, in embedded systems, it is necessary to separate the hard real-time system, which must process within a fixed time according to service characteristics, and the flexible real-time system, which is more flexible in processing time. It is difficult to port the operating system to a low-performance embedded device such as 8BIT MCU to perform simultaneous real-time. When porting a real-time OS (RTOS) to a low-specification MCU and performing a number of tasks, the performance of the real-time and general processing greatly deteriorates, causing a problem of re-designing the hardware and software if a hard real-time system is required for an operating system ported to a low-performance MCU such as an 8BIT MCU. Research on the technology that can process real-time processing system requirements on RTOS (ported in low-performance MCU) is needed.

IP-Based Heterogeneous Network Interface Gateway for IoT Big Data Collection (IoT 빅데이터 수집을 위한 IP기반 이기종 네트워크 인터페이스 연동 게이트웨이)

  • Kang, Jiheon
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.23 no.2
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    • pp.173-178
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    • 2019
  • Recently, the types and amount of data generated, collected, and measured in IoT such as smart home, security, and factory are increasing. The technologies for IoT service include sensor devices to measure desired data, embedded software to control the devices such as signal processing, wireless network protocol to transmit and receive the measured data, and big data and AI-based analysis. In this paper, we focused on developing a gateway for interfacing heterogeneous sensor network protocols that are used in various IoT devices and propose a heterogeneous network interface IoT gateway. We utilized a OpenWrt-based wireless routers and used 6LoWAN stack for IP-based communication via BLE and IEEE 802.15.4 adapters. We developed a software to convert Z-Wave and LoRa packets into IP packet using our Python-based middleware. We expect the IoT gateway to be used as an effective device for collecting IoT big data.

The design of capacitor-based self-powered artificial neural networks devices (커패시터 기반 자가발전 인공 신경망 디바이스 설계)

  • Kim, Yongjoo;Kim, Taeho
    • The Journal of the Convergence on Culture Technology
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    • v.6 no.3
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    • pp.361-367
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    • 2020
  • This paper proposes the battery-less ultra-low-power self-powered cooperating artificial neural networks device for embedded and IoT systems. This device can work without extraneous power supplying and can cooperate with other neuromorphic devices to build large-scale neural networks. This device has energy harvesting modules, so that can build a self-powered system and be used everywhere without space constraints for power supplying.