• Title/Summary/Keyword: Integrity Authentication

검색결과 360건 처리시간 0.033초

SECURITY THREATS AND ATTACKS IN CLOUD

  • Mohammed, Asma;Al khathami, Jamilah;Alhakami, Wajdi
    • International Journal of Computer Science & Network Security
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    • 제21권1호
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    • pp.184-191
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    • 2021
  • The amount of information and data in the digital era is increasing tremendously. Continuous online connectivity is generating a massive amount of data that needs to store in computers and be made available as and when required. Cloud computing technology plays a pivotal role in this league. Cloud computing is a term that refers to computer systems, resources and online services that aim to protect and manage data in an effective, more efficient and easy way. Cloud computing is an important standard for maintaining the integrity and security of sensitive data and information for organizations and individuals. Cloud security is one of the most important challenges that the security of the entire cloud system depends on. Thus, the present study reviews the security challenges that exist in cloud computing, including attacks that negatively affect cloud resources. The study also addresses the most serious threats that affect cloud security. We also reviewed several studies, specifically those from 2017-20, that cited effective mechanisms to protect authentication, availability and connection security in the cloud. The present analysis aims to provide solutions to the problems and causes of cloud computing security system violations, which can be used now and developed in the future.

Security Threats and Attacks in Internet of Things (IOTs)

  • Almtrafi, Sara Mutlaq;Alkhudadi, Bdour Abduallatif;Sami, Gofran;Alhakami, Wajdi
    • International Journal of Computer Science & Network Security
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    • 제21권1호
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    • pp.107-118
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    • 2021
  • The term Internet of Things (IoTs) refers to the future where things are known daily through the Internet, whether in one way or another, as it is done by the method of collecting various information from various sensors to form a huge network through which people, things and machines are helped to make a link between them at all time and anywhere. The IoTs is everywhere around us such as connected appliances, smart homes security systems and wearable health monitors. However, the question is what if there is a malfunction or outside interference that affects the work of these IoTs based devises? This is the reason of the spread of security causes great concern with the widespread availability of the Internet and Internet devices that are subject to many attacks. Since there aren't many studies that combines requirements, mechanisms, and the attacks of the IoTs, this paper which explores recent published studies between 2017 and 2020 considering different security approaches of protection related to the authentication, integrity, availability and confidentiality Additionally, the paper addresses the different types of attacks in IoTs. We have also addressed the different approaches aim to prevention mechanisms according to several researchers' conclusions and recommendations.

중소기업용 스마트팩토리 보안 취약점 분류체계 개발: 산업제어시스템 중심으로 (Developing a Classification of Vulnerabilities for Smart Factory in SMEs: Focused on Industrial Control Systems)

  • 정재훈;김태성
    • 한국IT서비스학회지
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    • 제21권5호
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    • pp.65-79
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    • 2022
  • The smart factory has spread to small and mid-size enterprises (SMEs) under the leadership of the government. Smart factory consists of a work area, an operation management area, and an industrial control system (ICS) area. However, each site is combined with the IT system for reasons such as the convenience of work. As a result, various breaches could occur due to the weakness of the IT system. This study seeks to discover the items and vulnerabilities that SMEs who have difficulties in information security due to technology limitations, human resources, and budget should first diagnose and check. First, to compare the existing domestic and foreign smart factory vulnerability classification systems and improve the current classification system, the latest smart factory vulnerability information is collected from NVD, CISA, and OWASP. Then, significant keywords are extracted from pre-processing, co-occurrence network analysis is performed, and the relationship between each keyword and vulnerability is discovered. Finally, the improvement points of the classification system are derived by mapping it to the existing classification system. Therefore, configuration and maintenance, communication and network, and software development were the items to be diagnosed and checked first, and vulnerabilities were denial of service (DoS), lack of integrity checking for communications, inadequate authentication, privileges, and access control in software in descending order of importance.

Certificate Revocation in Connected Vehicles

  • Sami S. Albouq
    • International Journal of Computer Science & Network Security
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    • 제23권5호
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    • pp.13-20
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    • 2023
  • In connected vehicles, drivers are exposed to attacks when they communicate with unauthenticated peers. This occurs when a vehicle relies on outdated information resulting in interactions with vehicles that have expired or revoked certificates claiming to be legitimate nodes. Vehicles must frequently receive or query an updated revoked certificate list to avoid communicating with suspicious vehicles to protect themselves. In this paper, we propose a scheme that works on a highway divided into clusters and managed by roadside units (RSUs) to ensure authenticity and preserve hidden identities of vehicles. The proposed scheme includes four main components each of which plays a major role. In the top hierarchy, we have the authority that is responsible for issuing long-term certificates and managing and controlling all descending intermediate authorities, which cover specific regions (e.g., RSUs) and provide vehicles with short-term pseudonyms certificates to hide their identity and avoid traceability. Every certificate-related operation is recorded in a blockchain storage to ensure integrity and transparency. To regulate communication among nodes, security managers were introduced to enable authorization and access right during communications. Together, these components provide vehicles with an immediately revoked certificate list through RSUs, which are provided with publish/subscribe brokers that enable a controlled messaging infrastructure. We validate our work in a simulated smart highway environment comprising interconnected RSUs to demonstrate our technique's effectiveness.

마이데이터 모델을 활용한 개인정보 이용내역 통지 방안 연구 (A Study on Notification Method of Personal Information Usage History using MyData Model)

  • 김태경;정성민
    • 디지털산업정보학회논문지
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    • 제18권1호
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    • pp.37-45
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    • 2022
  • With the development of the 4th industry, big data using AI is being used in many areas of our lives, and the importance of data is increasing accordingly. In particular, as various services using personal information appear and hacking attacks that exploit them appear in various ways, the importance of personal information management is increasing. Personal information must be managed safely even when collecting, retaining, using, providing, and destroying personal information, and the rights of information subjects must be protected. In this paper, an analysis was performed on the notification of usage history during the protection of the rights of information subjects using the MyData model. According to the Personal Information Protection Act, users must be periodically notified of the use of personal information, so we notify each individual of the use of personal information through e-mail or SNS once a year. It is difficult to understand and manage which company use my personal information. Therefore, in this paper, a personal information usage history notification system model was proposed, and as a result of performance analysis, it is possible to provide the controllability, availability, integrity, source authentication, and personal information self-determination rights.

A Certificateless-based One-Round Authenticated Group Key Agreement Protocol to Prevent Impersonation Attacks

  • Ren, Huimin;Kim, Suhyun;Seo, Daehee;Lee, Imyeong
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제16권5호
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    • pp.1687-1707
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    • 2022
  • With the development of multiuser online meetings, more group-oriented technologies and applications for instance collaborative work are becoming increasingly important. Authenticated Group Key Agreement (AGKA) schemes provide a shared group key for users with after their identities are confirmed to guarantee the confidentiality and integrity of group communications. On the basis of the Public Key Cryptography (PKC) system used, AGKA can be classified as Public Key Infrastructure-based, Identity-based, and Certificateless. Because the latter type can solve the certificate management overhead and the key escrow problems of the first two types, Certificateless-AGKA (CL-AGKA) protocols have become a popular area of research. However, most CL-AGKA protocols are vulnerable to Public Key Replacement Attacks (PKRA) due to the lack of public key authentication. In the present work, we present a CL-AGKA scheme that can resist PKRA in order to solve impersonation attacks caused by those attacks. Beyond security, improving scheme efficiency is another direction for AGKA research. To reduce the communication and computation cost, we present a scheme with only one round of information interaction and construct a CL-AGKA scheme replacing the bilinear pairing with elliptic curve cryptography. Therefore, our scheme has good applicability to communication environments with limited bandwidth and computing capabilities.

특성화고등학교의 실습 수업을 위한 블록체인과 디지털 트윈 활용 학습 방안 : 덴소 6축 로봇을 중심으로 (Design of Multi-Step Authentication Method using Blockchain)

  • 김세민;홍성혁
    • 한국정보통신학회:학술대회논문집
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    • 한국정보통신학회 2021년도 추계학술대회
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    • pp.511-513
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    • 2021
  • 본 연구에서는 디지털 트윈 기술과 블록체인 기술을 활용하여 특성화 고등학교에서 활용 가능한 학습 방안을 제안하였다. 본 연구에서 사용한 매체는 덴소 사에서 출시한 6축 로봇이며, 각 축을 표시한 데이터를 통하여 장비의 운용 좌표를 데이터화할 수 있으며, 로봇 동작을 개발한 데이터를 실제로 가상 매체에서 개발하여 실험할 수 있다. 또한 실습한 결과를 블록체인에 저장하여 평가에 대한 기밀성과 무결성을 보장할 수 있다. 본 연구에서 제안한 방안은 COVID-19 판데믹에서도 특성화 고등학교에서의 실습 수업에 많은 보탬이 될 수 있을 것으로 기대된다.

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Key-based dynamic S-Box approach for PRESENT lightweight block cipher

  • Yogaraja CA;Sheela Shobana Rani K
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제17권12호
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    • pp.3398-3415
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    • 2023
  • Internet-of-Things (IoT) is an emerging technology that interconnects millions of small devices to enable communication between the devices. It is heavily deployed across small scale to large scale industries because of its wide range of applications. These devices are very capable of transferring data over the internet including critical data in few applications. Such data is exposed to various security threats and thereby raises privacy-related concerns. Even devices can be compromised by the attacker. Modern cryptographic algorithms running on traditional machines provide authentication, confidentiality, integrity, and non-repudiation in an easy manner. IoT devices have numerous constraints related to memory, storage, processors, operating systems and power. Researchers have proposed several hardware and software implementations for addressing security attacks in lightweight encryption mechanism. Several works have made on lightweight block ciphers for improving the confidentiality by means of providing security level against cryptanalysis techniques. With the advances in the cipher breaking techniques, it is important to increase the security level to much higher. This paper, focuses on securing the critical data that is being transmitted over the internet by PRESENT using key-based dynamic S-Box. Security analysis of the proposed algorithm against other lightweight block cipher shows a significant improvement against linear and differential attacks, biclique attack and avalanche effect. A novel key-based dynamic S-Box approach for PRESENT strongly withstands cryptanalytic attacks in the IoT Network.

기밀문서유통을 위한 Weil Pairing IBE 개선 연구 (Study on Improvement of Weil Pairing IBE for Secret Document Distribution)

  • 최정현
    • 인터넷정보학회논문지
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    • 제13권2호
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    • pp.59-71
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    • 2012
  • PKI에 기반을 둔 공개키 방식은 인증성과 비밀성에서 뛰어난 반면 적용된 시스템에서 인증서와 키 관리는 큰 부담이다. 또한 암복호 복잡도(complexity)가 크기 때문에 WSN(Wireless Sensor Network)의 제한된 컴퓨팅 장치에서는 사용하기가 어렵다. 이에 키관리 부담을 없앤 IBE(ID Based Encryption) 방식에서 Bilinear Pairing 방식은 수행속도가 뛰어나고 충분히 안전한 DDH(Decisional Diffie Hellman) 알고리즘으로 인/검증을 처리하는 차세대 암호방식이다. Bilinear Pairing의 이론을 구현한 Elliptic Curve Weil Pairing의 알고리즘은 단순하고 CCA(공격)에 IND/NM의 강력한 보안조건을 만족한다. 동작측면에서 Random Oracle Model을 가정한 IBE PKG는 단일 기밀문서 파일서버로 작동하는 우리의 목적 시스템의 구조에 적합하다. 따라서 본 논문는 Weil Pairing Based IBE 방식을 폐쇄적 기밀문서 유통망[2]에 적합하도록 암복호 및 인검증 알고리즘을 개선하고 본 유통망에 적용된 효율적 프로토콜을 제안한다. 본 논문은 먼저 암호화, 무결성 그리고 사용자 인증을 O(DES) 수준으로 수행하는 개선된 알고리즘을 제안하며 한 번의 암호화 처리에서 비밀성, 무결성과 인증성을 달성하는 정보를 암호문에 포함된다. 둘째 PKI 인증서의 효과를 가진 공개 식별자를 적용하여 키 노출의 위험을 줄인 개선된 IBE 방식을 제안한다.

AES 기반 와이브로 보안 프로세서 설계 (A Design of AES-based WiBro Security Processor)

  • 김종환;신경욱
    • 대한전자공학회논문지SD
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    • 제44권7호통권361호
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    • pp.71-80
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    • 2007
  • 본 논문에서는 와이브로 (WiBro) 무선 인터넷 시스템의 보안 부계층 (Security Sub-layer)을 지원하는 와이브로 보안 프로세서 (WBSec)의 효율적인 하드웨어 설계에 관해 기술한다. 설계된 WBSec 프로세서는 AES (Advanced Encryption Standard) 블록암호 알고리듬을 기반으로 하여 데이터 암호 복호, 인증 무결성, 키 암호 복호 등 무선 네트워크의 보안기능을 처리한다. WBSec 프로세서는 ECB, CTR, CBC, CCM 및 key wrap/unwrap 동작모드를 가지며, 암호 연산만을 처리하는 AES 코어와 암호 복호 연산을 처리하는 AES 코어를 병렬로 사용하여 전체적인 성능이 최적화되도록 설계되었다. 효율적인 하드웨어 구현을 위해 AES 코어 내부의 라운드 변환 블록에 하드웨어 공유기법을 적용하여 설계하였으며, 또한 하드웨어 복잡도에 가장 큰 영향을 미치는 S-box를 체 (field) 변환 방법을 적용하여 구현함으로써 LUT (Look-Up Table)로 구현하는 방식에 비해 약 25%의 게이트를 감소시켰다. Verilog-HDL로 설계된 WBSec 프로세서는 22,350 게이트로 구현되었으며, key wrap 모드에서 최소 16-Mbps의 성능과 CCM 암호 복호 모드에서 최대 213-Mbps의 성능을 가져 와이브로 시스템 보안용 하드웨어 설계에 IP 형태로 사용될 수 있다.