• Title/Summary/Keyword: Smart Home Authentication

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Visible Light Identification System for Smart Door Lock Application with Small Area Outdoor Interface

  • Song, Seok-Jeong;Nam, Hyoungsik
    • Current Optics and Photonics
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    • v.1 no.2
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    • pp.90-94
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    • 2017
  • Visible light identification (VLID) is a user identification system for a door lock application using smartphone that adopts visible light communication (VLC) technology with the objective of high security, small form factor, and cost effectiveness. The user is verified by the identification application program of a smartphone via fingerprint recognition or password entry. If the authentication succeeds, the corresponding encoded visible light signals are transmitted by a light emitting diode (LED) camera flash. Then, only a small size and low cost photodiode as an outdoor interface converts the light signal to the digital data along with a comparator, and runs the authentication process, and releases the lock. VLID can utilize powerful state-of-the-art hardware and software of smartphones. Furthermore, the door lock system is allowed to be easily upgraded with advanced technologies without its modification and replacement. It can be upgraded by just update the software of smartphone application or replacing the smartphone with the latest one. Additionally, wireless connection between a smartphone and a smart home hub is established automatically via Bluetooth for updating the password and controlling the home devices. In this paper, we demonstrate a prototype VLID door lock system that is built up with LEGO blocks, a photodiode, a comparator circuit, Bluetooth module, and FPGA board.

Improved authentication mechanism of the RADIUS protocol in the Internet of Things (사물인터넷 환경에서 RADIUS 프로토콜의 향상된 인증기법)

  • Kim, Young-Se;Han, Keun-hee;Kim, Kee-cheon
    • Journal of Internet of Things and Convergence
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    • v.2 no.1
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    • pp.1-6
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    • 2016
  • The IOT environment, people connected to the network, object, everything such as space (Things) generates data in real time. The information between the object collecting, sharing, are utilized. Currently health care, research in various fields such as smart home has been promoted. Also appeared concepts emphasized all things(IOE) Internet connection between the geographic space and the Internet. Human, while important connections between the objects, such as objects, studies of efficient and secure authentication technologies have been developed. In this paper, we propose a RADIUS (Remote Authentication Dial In User Service) protocol for improved mutual authentication between each object in the IOT environment.

Research on Secure IoT Lightweight Protocols (사물인터넷용 경량 프로토콜 비교 연구)

  • Sunghyuck Hong
    • Advanced Industrial SCIence
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    • v.2 no.1
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    • pp.1-7
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    • 2023
  • The use of Internet of Things(IoT) in smart cities and smart homes is essential. The security of the sensor nodes, which are the core of the IoT, is weak and hacking attacks are severe enough to have a fatal impact on real life. This research is conducted to improve the security of the Internet of Things by developing a lightweight secure communication protocol for the Internet of Things, and to build a safe Internet of Things environment suitable for the era of the 4th Industrial Revolution. It contributes to building a safe and convenient smart city and smart home by proposing key management and identifier development to increase the confidentiality of communication and the establishment of an Internet authentication system.

A Study on the DID based Smart Remocon and FIDO Transaction Certification for Home-shopping (DID 기반의 스마트 리모콘과 홈쇼핑 FIDO 거래인증 연구)

  • Yeo, Hyupgoo;Kang, Mingoo;Sonh, Seungil
    • Smart Media Journal
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    • v.9 no.1
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    • pp.60-66
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    • 2020
  • In this paper, the FIDO (Fast IDentity Online) transaction certification platform was proposed for applying the DID (Decentralized ID) of blockchain with home shopping channels to the IPTV service providers based on the Remocon (Remote Control). In this case, the DID based smart remocon applies biometric identification techniques for personal identification. These individual DID smart remote controls apply distributed ID blockchain, enabling home shopping viewers to conduct reliable ratings surveys through the detection of channel changed information. In addition, this smart remocon utilizes the product purchased information history on home shopping channels, allowing IPTV's home shopping viewers to compare the same broadcasted production information on all channels by blockchain technique and their production characteristics. IPTV service providers can process home shopping order/authorization informations in one-stop service via a number of home shopping broadcasting companies, and DID smart remote controls for home shopping viewers with the checking results of their real-time online access to confirm the FIDO2.0 transaction certification homepage. Thus, the FIDO transaction authentication platforms of IPTV service provider(Telecommunication company) can be expected to improve the benefits of home shopping customers, and to reduce the broadcasting companies' burden of payment, too.

A Study on Enhanced 3PAKE Scheme against Password Guessing Attack in Smart Home Environment (스마트홈 환경에서 패스워드 추측 공격에 안전한 개선된 3PAKE 기법에 대한 연구)

  • Lee, Dae-Hwi;Lee, Im-Yeong
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.26 no.6
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    • pp.1471-1481
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    • 2016
  • As concern about IoT is increasing recently, various IoT services are being launched. Smart home is closely related to our daily life by combining IoT with user's residential space. Therefore, if an unauthorized user accesses a device inside a Smart home, it can cause more serious damage to user as it is related with daily lives. For instance executing the command allowing unauthenticated access for the internal locking device can be a real harm to user's property like a home invasion. To prevent this problem, this paper introduces 3PAKE Techniques, which provides authenticated Key exchange through Home gateway using Password-based Authenticated Key Exchange(PAKE).

A Lightweight Pseudonym Authentication and Key Agreement Protocol for Multi-medical Server Architecture in TMIS

  • Liu, Xiaoxue;Li, Yanping;Qu, Juan;Ding, Yong
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.11 no.2
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    • pp.924-944
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    • 2017
  • Telecare Medical Information System (TMIS) helps the patients to gain the health monitoring information at home and access medical services over the mobile Internet. In 2015, Das et al proposed a secure and robust user AKA scheme for hierarchical multi-medical server environment in TMIS, referred to as DAKA protocol, and claimed that their protocol is against all possible attacks. In this paper, we first analyze and show DAKA protocol is vulnerable to internal attacks, impersonation attacks and stolen smart card attack. Furthermore, DAKA protocol also cannot provide confidentiality. We then propose a lightweight pseudonym AKA protocol for multi-medical server architecture in TMIS (short for PAKA). Our PAKA protocol not only keeps good security features declared by DAKA protocol, but also truly provides patient's anonymity by using pseudonym to protect sensitive information from illegal interception. Besides, our PAKA protocol can realize authentication and key agreement with energy-saving, extremely low computation cost, communication cost and fewer storage resources in smart card, medical servers and physical servers. What's more, the PAKA protocol is proved secure against known possible attacks by using Burrows-Abadi-Needham (BAN) logic. As a result, these features make PAKA protocol is very suitable for computation-limited mobile device.

Smart Home Environment for the Protection of Multimedia Digital Contents (멀티미디어 콘텐츠 보호를 위한 스마트 홈 환경)

  • Choi, Kee-Hyun;Jang, Kyung-Soo;Shin, Ho-Jin
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.11 no.2
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    • pp.189-196
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    • 2011
  • As internet is getting advanced day by day, digital contents have been developed in various areas as killer content in the IT industry. It needs to develop lots of complicated digital content protect systems due to the enhancement and variety of user's multimedia devices. Although there are lots of protect systems based on DRM(Digital Rights Management) technology, it is difficult to provide secure protection because of the problems resulting from analog hole problem, inefficiency of key sharing and various independent protect technologies. Thus, in this paper, we propose a novel authentication and protect system based on RFID(Radio Frequency Identification) technology to solve the problems and show possibility of free content duplication and efficient contents management in smart home environments.

Private Blockchain and Biometric Authentication-based Chronic Disease Management Telemedicine System for Smart Healthcare (스마트 헬스케어를 위한 프라이빗 블록체인과 생체인증기반의 만성질환관리 원격의료시스템)

  • Young-Ae Han;Hyeok Kang;Keun-Ho Lee
    • Journal of Internet of Things and Convergence
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    • v.9 no.1
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    • pp.33-39
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    • 2023
  • As the number of people with chronic diseases increases due to an aging society, it is urgent to prevent and manage their diseases. Although biometric authentication methods and Telemedicine Systems have been introduced to solve these problems, it is difficult to solve the security problem of medical information and personal authentication. Since smart healthcare includes personal medical information of subjects, the security of personal information is the most important field. Therefore, in this paper, we tried to propose a Telemedicine System using a smart wearable device ECG in the form of a wristband and face personal authentication in a private blockchain environment. This system targets various medical personnel and patients with chronic diseases in all regions, and uses a private blockchain that can increase data integrity and transparency, ECG and face authentication that are difficult to forge and alter and have high personal identification to provide a system with high security and reliability. composed. Through this, it is intended to contribute to increasing the efficiency of chronic disease management by focusing on disease prevention and health management for patients with chronic diseases at home.

A Study on Authentication Design and Method of Electrical IT Equipment (전기IT기기의 인증설계와 인증방법 연구)

  • Park, Dea-Woo;Choi, Choung-Moon
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2011.06a
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    • pp.155-158
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    • 2011
  • U-city구축에서 전기의 안전한 공급과 전기로 인한 화재 등 재난에 대한 통제가 가능해야 한다. U-city에 구축되어야 할 Smart Grid 네트워크와 Smart Grid 인프라 구축을 위해서 사용되는 전기IT기기에 대한 인증을 위한 인증설계와 인증방법에 대한 연구가 필요하다. 본 논문에서는 개발이 진행 중인 전기IT기기의 인증을 위하여 국내 국제표준화 기준을 연구한 후 국내에서 인증 받을 수 있는 인증설계를 연구한다. 인증설계는 Home Network Wall-Pad, 비접촉식 아크 검출기, 아크 안전진단, 아울렛, 저전압 배전반(MPNP) 블랙박스, 차단기이다. 그리고 인증기관에서 인증적용과 인증내용 및 평가기준과 전기IT기기의 인증심의 기관에서 기준 값 등에 관한 연구를 한다. 본 연구는 Smart Grid 네트워크와 인프라 구축을 위한 실무적인 연구 자료로 활용될 것이다.

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A Dual Security Technique based on Beacon (비콘 기반의 이중 보안 기법)

  • Park, Sang-Min;Kim, Chul-Jin
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.8
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    • pp.311-317
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    • 2016
  • Many services have been developed that are based on smart devices, and security between devices is emphasized. A beacon on the current IoT(Internet of Things) services has been utilized in the commercial field and is being applied to the services of the home IoT. On the other hand, the beacon is weak to security using Bluetooth-based services. Therefore, it is important to strengthen the security of the beacon. This paper proposes a dual security technique that can enhance the security of beacon-based services. The dual security architecture and security process is proposed based on beacon and authentication service. In addition, mobile application was developed and validated based on the beacon for proving the suitability of the proposed technique. The experimental method for verification are the authentication failure case, such as 1st authentication fail, and authentication success case, such as 1st authentication success and 2nd authentication success. The components of the verification experiments consists of two beacons (matched with Beacon ID, mismatched with Beacon ID), one mobile device and authentication application. This was tested to verify the compatibility of the dual security architecture and 1st/2nd authentication process.