• Title/Summary/Keyword: secret sharing

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An Improved HORS for Stream Authentication (스트림 인증에 적합한 개선된 HORS기법)

  • 박용수;조유근
    • Journal of KIISE:Computer Systems and Theory
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    • v.30 no.7_8
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    • pp.417-425
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    • 2003
  • We propose an efficient one-time signature scheme for stream authentication by improving HORS. When one-time signatures are used for authenticating live streams, one of the most serious drawbacks is that its large signature size yields high communication overhead. Compared with the previous one-time signature schemes, proposed scheme has the smallest signature size. Moreover, verification overhead is very low. Compared with the previous schemes for stream authentication, signing overhead of our scheme is larger than that of HORS but much lower than those of BiBa or Powerball. Moreover, signing operation can be trivially parallelized without any additional risk because it does not require sharing of the secret key between distributed servers.

Research on Steganography in Emulab Testbed (Emulab 테스트베드 환경에서의 분산 스테가노그래피 연구)

  • Jung, Ki-Hyun;Seok, Woo-Jin
    • Journal of the Institute of Electronics and Information Engineers
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    • v.52 no.11
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    • pp.79-84
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    • 2015
  • Steganography is to conceal the existence of secrete data itself. The Emulab is a framework to provide real systems and network topology that can set up at anytime by researchers. In this paper, we show that steganography techniques can be applied in the Emulab environment. Steganography methods are evaluated on a standalone and sharing environments using the color bitmap images. The cover image is divided into RGB channels and then embedded the secret data at each client. The experimental results demonstrate that execution time is better in client/server environment as cover image size is increasing.

Encryption-based Image Steganography Technique for Secure Medical Image Transmission During the COVID-19 Pandemic

  • Alkhliwi, Sultan
    • International Journal of Computer Science & Network Security
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    • v.21 no.3
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    • pp.83-93
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    • 2021
  • COVID-19 poses a major risk to global health, highlighting the importance of faster and proper diagnosis. To handle the rise in the number of patients and eliminate redundant tests, healthcare information exchange and medical data are transmitted between healthcare centres. Medical data sharing helps speed up patient treatment; consequently, exchanging healthcare data is the requirement of the present era. Since healthcare professionals share data through the internet, security remains a critical challenge, which needs to be addressed. During the COVID-19 pandemic, computed tomography (CT) and X-ray images play a vital part in the diagnosis process, constituting information that needs to be shared among hospitals. Encryption and image steganography techniques can be employed to achieve secure data transmission of COVID-19 images. This study presents a new encryption with the image steganography model for secure data transmission (EIS-SDT) for COVID-19 diagnosis. The EIS-SDT model uses a multilevel discrete wavelet transform for image decomposition and Manta Ray Foraging Optimization algorithm for optimal pixel selection. The EIS-SDT method uses a double logistic chaotic map (DLCM) is employed for secret image encryption. The application of the DLCM-based encryption procedure provides an additional level of security to the image steganography technique. An extensive simulation results analysis ensures the effective performance of the EIS-SDT model and the results are investigated under several evaluation parameters. The outcome indicates that the EIS-SDT model has outperformed the existing methods considerably.

Authority Delegation Scheme for Secure Social Community Creation in Community-Based Ubiquitous Networks (커뮤니티 기반의 유비쿼터스 네트워크 환경에서 안전한 커뮤니티 생성 권한 위임 방안)

  • Roh, Hyo-Sun;Jung, Sou-Hwan
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.47 no.1
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    • pp.91-98
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    • 2010
  • This paper proposes authority delegation for secure social community creation and mutual authentication scheme between the community members using proxy signature in community-based ubiquitous networks. In community-based ubiquitous network, User's context-awareness information is collected and used to provide context-awareness network service and application service for someone who need it. For the many reason, i.e. study, game, information sharing, business and conference, social community could be created by members of a social group. However, in community-based ubiquitous network, this kind of the context-awareness information could be abused and created by a malicious nodes for attack the community. Also, forgery community could be built up to attack the community members. The proposed scheme using the proxy signature provides a mutual authentication and secure secret key exchange between community members, and supports secure authority delegation that can creates social community. Also, when delegation of signing authority and mutual authentication, this scheme reduces total computation time compared to the RSA signature scheme.

Secure Distributed Data Management Architecture for Consumer Protection of Smart Grid (스마트 그리드의 소비자 보호를 위한 안전한 분산 데이터 관리 구조)

  • Park, Nam-Je;Song, You-Jin;Park, Kwang-Yong
    • The Journal of the Korea Contents Association
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    • v.10 no.9
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    • pp.57-67
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    • 2010
  • Smart grid technology can expand energy efficiency into the home by monitoring consumer energy usage in real time and communicating with household devices that respond to demands to shut off during periods of non-use, allowing individual consumers to control their electricity usage more effectively. But, the information collected on a smart grid will form a library of personal information, the mishandling of which could be highly invasive of consumer privacy. There will be major concerns if consumer-focused principles of transparency and control are not treated as essential design principles from beginning to end. In this paper, using. All-Or-Nothing Transform encryption mode for providing smart grid security, we propose efficient distributed data Management based on XOR operation. The contribution of this paper is to provide a secure algorithm that manages efficiently distributed data in the field of private data in smart grid environment.

Key Management for Secure Internet of Things(IoT) Data in Cloud Computing (클라우드 컴퓨팅에서 안전한 사물인터넷 데이터를 위한 키 관리)

  • Sung, Soon-hwa
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.27 no.2
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    • pp.353-360
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    • 2017
  • The Internet of Things(IoT) security has more need than a technical problem as it needs series of regulations and faultless security system for common purposes. So, this study proposes an efficient key management in order that can be trusted IoT data in cloud computing. In contrast with a key distribution center of existing sensor networks, the proposed a federation key management of cloud proxy key server is not central point of administration and enables an active key recovery and update. The proposed key management is not a method of predetermined secret keys but sharing key information of a cloud proxy key server in autonomous cloud, which can reduce key generation and space complexity. In addition, In contrast with previous IoT key researches, a federation key of cloud proxy key server provides an extraction ability from meaningful information while moving data.

Quorum-based Key Management Scheme in Wireless Sensor Networks

  • Wuu, Lih-Chyau;Hung, Chi-Hsiang;Chang, Chia-Ming
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.6 no.9
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    • pp.2442-2454
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    • 2012
  • To ensure the security of wireless sensor networks, it is important to have a robust key management scheme. In this paper, we propose a Quorum-based key management scheme. A specific sensor, called as key distribution server (KDS), generates a key matrix and establishes a quorum system from the key matrix. The quorum system is a set system of subsets that the intersection of any two subsets is non-empty. In our scheme, each sensor is assigned a subset of the quorum system as its pre-distributed keys. Whenever any two sensors need a shared key, they exchange their IDs, and then each sensor by itself finds a common key from its assigned subset. A shared key is then generated by the two sensors individually based on the common key. By our scheme, no key is needed to be refreshed as a sensor leaves the network. Upon a sensor joining the network, the KDS broadcasts a message containing the joining sensor ID. After receiving the broadcast message, each sensor updates the key which is in common with the new joining one. Only XOR and hash operations are required to be executed during key update process, and each sensor needs to update one key only. Furthermore, if multiple sensors would like to have a secure group communication, the KDS broadcasts a message containing the partial information of a group key, and then each sensor in the group by itself is able to restore the group key by using the secret sharing technique without cooperating with other sensors in the group.

CP-ABE Access Control that Block Access of Withdrawn Users in Dynamic Cloud

  • Hwang, Yong-Woon;Lee, Im-Yeong
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.14 no.10
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    • pp.4136-4156
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    • 2020
  • Recently, data can be safely shared or stored using the infrastructure of cloud computing in various fields. However, issues such as data security and privacy affect cloud environments. Thus, a variety of security technologies are required, one of them is security technology using CP-ABE. Research into the CP-ABE scheme is currently ongoing, but the existing CP-ABE schemes can pose security threats and are inefficient. In terms of security, the CP-ABE approach should be secure against user collusion attacks and masquerade attacks. In addition, in a dynamic cloud environment where users are frequently added or removed, they must eliminate user access when they leave, and so users will not be able to access the cloud after removal. A user who has left should not be able to access the cloud with the existing attributes, secret key that had been granted. In addition, the existing CP-ABE scheme increases the size of the ciphertext according to the number of attributes specified by the data owner. This leads to inefficient use of cloud storage space and increases the amount of operations carried out by the user, which becomes excessive when the number of attributes is large. In this paper, CP-ABE access control is proposed to block access of withdrawn users in dynamic cloud environments. This proposed scheme focuses on the revocation of the attributes of the withdrawn users and the output of a ciphertext of a constant-size, and improves the efficiency of the user decryption operation through outsourcing.

Weakness and Improvement of Cloud Shredder (Cloud Shredder에 대한 취약점 분석 및 개선 방안에 관한 연구)

  • Park, Minsu;Kang, Sunghoon;Kim, Seungjoo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.38B no.5
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    • pp.401-409
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    • 2013
  • Recently, almost all data has stored and managed in the shape of digital as development of IT infrastructure. Digital data is able to store the huge data in very small space. but if the disk should be stolen or lost, it would have many secure problems such as data leakage. Currently, digital data is protected by encryption method to prevent data leakage. However, the encryption method is not enough to protect data because the performance of attack system is higher and the attack methods is various. Therefore, there is a need for a new advanced data protection method. To solve secure problems, many research has been progressed like Cloud Shredder, which distributes data and then store. In this paper, We found out the problem of the Cloud Shredder and proposed an advanced method of digital data protection to solve those problem.

Secure Configuration Scheme of Pre-shared Key for Lightweight Devices in Internet of Things (사물인터넷의 경량화 장치를 위한 안전한 Pre-shared Key 설정 기술)

  • Kim, Jeongin;Kang, Namhi
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.15 no.3
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    • pp.1-6
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    • 2015
  • The IoT(Internet of things) technology enable objects around user to be connected with each other for sharing information. To support security is the mandatory requirement in IoT because it is related to the disclosure of private information but also directly related to the human safety. However, it is difficult to apply traditional security mechanism into lightweight devices. This is owing to the fact that many IoT devices are generally resource constrained and powered by battery. PSK(Pre-Shared Key) based approach, which share secret key in advance between communication entities thereafter operate security functions, is suitable for light-weight device. That is because PSK is costly efficient than a session key establishment approach based on public key algorithm. However, how to safely set a PSK of the lightweight device in advance is a difficult issue because input/output interfaces such as keyboard or display are constrained in general lightweight devices. To solve the problem, we propose and develop a secure PSK configuration scheme for resource constrained devices in IoT.