• Title/Summary/Keyword: Mobile Malware

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Efficient Malware Detector for Android Devices (안드로이드 모바일 단말기를 위한 효율적인 악성앱 감지법)

  • Lee, Hye Lim;Jang, Soohee;Yoon, Ji Won
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.24 no.4
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    • pp.617-624
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    • 2014
  • Smart phone usage has increased exponentially and open source based Android OS occupy significant market share. However, various malicious applications that use the characteristic of Android threaten users. In this paper, we construct an efficient malicious application detector by using the principle component analysis and the incremental k nearest neighbor algorithm, which consider an required permission, of Android applications. The cross validation is exploited in order to find a critical parameter of the algorithm. For the performance evaluation of our approach, we simulate a real data set of Contagio Mobile.

A Novel Technique for Detection of Repacked Android Application Using Constant Key Point Selection Based Hashing and Limited Binary Pattern Texture Feature Extraction

  • MA Rahim Khan;Manoj Kumar Jain
    • International Journal of Computer Science & Network Security
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    • v.23 no.9
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    • pp.141-149
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    • 2023
  • Repacked mobile apps constitute about 78% of all malware of Android, and it greatly affects the technical ecosystem of Android. Although many methods exist for repacked app detection, most of them suffer from performance issues. In this manuscript, a novel method using the Constant Key Point Selection and Limited Binary Pattern (CKPS: LBP) Feature extraction-based Hashing is proposed for the identification of repacked android applications through the visual similarity, which is a notable feature of repacked applications. The results from the experiment prove that the proposed method can effectively detect the apps that are similar visually even that are even under the double fold content manipulations. From the experimental analysis, it proved that the proposed CKPS: LBP method has a better efficiency of detecting 1354 similar applications from a repository of 95124 applications and also the computational time was 0.91 seconds within which a user could get the decision of whether the app repacked. The overall efficiency of the proposed algorithm is 41% greater than the average of other methods, and the time complexity is found to have been reduced by 31%. The collision probability of the Hashes was 41% better than the average value of the other state of the art methods.

A Exploring the impact of malware on mobile devices (모바일 장치에 대한 멀웨어의 영향 탐색)

  • Jun-ho Lee;Jae-kyung Park
    • Proceedings of the Korean Society of Computer Information Conference
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    • 2023.07a
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    • pp.611-613
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    • 2023
  • 모바일 멀웨어는 민감한 데이터의 도용, 기기 성능 저하, 금전적 피해 유발 등 다양한 위협을 내포하고 있으며 특히 피싱, 앱 기반 공격 및 네트워크 기반 공격과 같은 기술을 통해 모바일 장치를 악용할 수 있다. 이를 해결하기 위해 바이러스 백신 소프트웨어 및 강력한 암호 사용과 같은 보안 기술을 구현하면 모바일 멀웨어의 영향을 방지하고 완화하는 데 도움이 될 수 있다. 추가적으로 개인과 조직이 모바일 멀웨어와 관련된 위험을 인식하고 불리한 결과를 피하기 위해 이를 차단하기 위한 사전 조치를 취하는 것이 중요하다. 본 논문에서는 이러한 조치에 대한 보안 예방책을 제안하고자 하며 이를 통해 보다 안전한 모바일 환경을 갖출 수 있을 것이라 판단한다.

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A Study on Secure Key Backup/Recovery Scheme for Device based on Mobile Trusted Module (Mobile Trusted Module 기반 단말에서의 안전한 키 백업 및 복구 방안에 대한 연구)

  • Kang, Dong-Wan;Jun, Sung-Ik;Lee, Im-Yeoung
    • The KIPS Transactions:PartC
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    • v.16C no.3
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    • pp.335-346
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    • 2009
  • Mobile environments are evolving the main communication environment as a develops of communication technology. In mobile environments, sensitive information can be compromised on-line, so demand for security has increased. Also, mobile devices that provide various services are in danger from malware and illegal devices, phishing and sniffing etc, and the privacy. Therefore, MTM(Mobile Trusted Module) is developed and promoted by TCG(Trusted Computing Group), which is an industry standard body to enhance the security level in the mobile computing environment. MTM protects user privacy and platform integrity, because it is embedded in the platform, and it is physically secure. However, a security approach is required when secret data is migrated elsewhere, because MTM provides strong security functions. In this paper, we analyze the TCG standard and migration method for cryptographic key, then we propose a secure migration scheme for cryptographic key using key Backup/Recovery method.

Efficient method for finding patched vulnerability with code filtering in Apple iOS (코드 필터링 기법을 이용한 iOS 환경에서의 패치 분석 방법론)

  • Jo, Je-gyeong;Ryou, Jae-cheol
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.25 no.5
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    • pp.1021-1026
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    • 2015
  • Increasing of damage by phishing, government and organization response more rapidly. So phishing use malware and vulnerability for attack. Recently attack that use patch analysis is increased when Microsoft announce patches. Cause of that, researcher for security on defense need technology of patch analysis. But most patch analysis are develop for Microsoft's product. Increasing of mobile environment, necessary of patch analysis on mobile is increased. But ordinary patch analysis can not use mobile environment that there is many file and small size. So we suggest this research that use code filtering instead of Control Flow Graph and Abstract Syntax Tree.

A Study on the Vulnerability of Security Keypads in Android Mobile Using Accessibility Features (안드로이드 접근성(Accessibility) 기능을 이용한 보안키패드의 취약점 공격 및 대응 방안)

  • Lee, Jung-Woong;Kim, In-Seok
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.26 no.1
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    • pp.177-185
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    • 2016
  • As the fintech industry is growing at an incredible rate, mobile phones are positioned as the most important tool for financial transaction. However, with a rising number of malware applications, the types of attack and illegal access to mobile device are becoming more diverse and sophisticated. This paper studies the potential keylogger attack by exploiting the Accessibility Service in Android framework. This type of attack allows the malicious individual to use keylogger on the victim's Android mobile phone to steal passwords during mobile financial transaction regardless of security keypad setting. Lastly the paper proposes solutions to counter these types of attack by verifying the accessibility usage and amending the application guideline for accessibility.

Filtering and Intrusion Detection Approach for Secured Reconfigurable Mobile Systems

  • Idriss, Rim;Loukil, Adlen;Khalgui, Mohamed;Li, Zhiwu;Al-Ahmari, Abdulrahman
    • Journal of Electrical Engineering and Technology
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    • v.12 no.5
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    • pp.2051-2066
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    • 2017
  • This paper deals with reconfigurable secured mobile systems where the reconfigurability has the potential of providing a required adaptability to change the system requirements. The reconfiguration scenario is presented as a run-time automatic operation which allows security mechanisms and the addition-removal-update of software tasks. In particular, there is a definite requirement for filtering and intrusion detection mechanisms that will use fewer resources and also that will improve the security on the secured mobile devices. Filtering methods are used to control incoming traffic and messages, whereas, detection methods are used to detect malware events. Nevertheless, when different reconfiguration scenarios are applied at run-time, new security threats will be emerged against those systems which need to support multiple security objectives: Confidentiality, integrity and availability. We propose in this paper a new approach that efficiently detects threats after reconfigurable scenarios and which is based on filtering and intrusion detection methods. The paper's contribution is applied to Android where the evaluation results demonstrate the effectiveness of the proposed middleware in order to detect the malicious events on reconfigurable secured mobile systems and the feasibility of running and executing such a system with the proposed solutions.

A Static Analysis Technique for Android Apps Written with Xamarin (자마린으로 개발된 안드로이드 앱의 정적 분석 연구)

  • Lim, Kyeong-hwan;Kim, Gyu-sik;Shim, Jae-woo;Cho, Seong-je
    • Journal of the Korea Institute of Information Security & Cryptology
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    • v.28 no.3
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    • pp.643-653
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    • 2018
  • Xamarin is a representative cross-platform development framework that allows developers to write mobile apps in C# for multiple mobile platforms, such as Android, iOS, or Windows Phone. Using Xamarin, mobile app developers can reuse existing C# code and share significant code across multiple platforms, reducing development time and maintenance costs. Meanwhile, malware authors can also use Xamarin to spread malicious apps on more platforms, minimizing the time and cost of malicious app creation. In order to cope with this problem, it is necessary to analyze and detect malware written with Xamarin. However, little studies have been conducted on static analysis methods of the apps written in Xamarin. In this paper, we examine the structure of Android apps written with Xamarin and propose a static analysis technique for the apps. We also demonstrate how to statically reverse-engineer apps that have been transformed using code obfuscation. Because the Android apps written with Xamarin consists of Java bytecode, C# based DLL libraries, and C/C++ based native libraries, we have studied static reverse engineering techniques for these different types of code.

Feature Analysis for Detecting Mobile Application Review Generated by AI-Based Language Model

  • Lee, Seung-Cheol;Jang, Yonghun;Park, Chang-Hyeon;Seo, Yeong-Seok
    • Journal of Information Processing Systems
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    • v.18 no.5
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    • pp.650-664
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    • 2022
  • Mobile applications can be easily downloaded and installed via markets. However, malware and malicious applications containing unwanted advertisements exist in these application markets. Therefore, smartphone users install applications with reference to the application review to avoid such malicious applications. An application review typically comprises contents for evaluation; however, a false review with a specific purpose can be included. Such false reviews are known as fake reviews, and they can be generated using artificial intelligence (AI)-based text-generating models. Recently, AI-based text-generating models have been developed rapidly and demonstrate high-quality generated texts. Herein, we analyze the features of fake reviews generated from Generative Pre-Training-2 (GPT-2), an AI-based text-generating model and create a model to detect those fake reviews. First, we collect a real human-written application review from Kaggle. Subsequently, we identify features of the fake review using natural language processing and statistical analysis. Next, we generate fake review detection models using five types of machine-learning models trained using identified features. In terms of the performances of the fake review detection models, we achieved average F1-scores of 0.738, 0.723, and 0.730 for the fake review, real review, and overall classifications, respectively.

A Hybrid Vulnerability of NFC Technology in Smart Phone (스마트폰에서 NFC를 이용한 융.복합 하이브리드 취약점)

  • Park, Chang Min;Park, Neo;Park, Won Hyung
    • Convergence Security Journal
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    • v.12 no.4
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    • pp.3-8
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    • 2012
  • Smartphones have all the recent technology integration and NFC (Near Field Communication) Technology is one of them and become an essential these days. Despite using smartphones with NFC technology widely, not many security vulnerabilities have been discovered. This paper attempts to identify characteristics and various services in NFC technology, and to present a wide range of security vulnerabilities, prevention, and policies especially in NFC Contactless technology. We describe a security vulnerability and an possible threat based on human vulnerability and traditional malware distribution technic using Peer-to-Peer network on NFC-Enabled smartphones. The vulnerability is as follows: An attacker creates a NFC tag for distributing his or her malicious code to unspecified individuals and apply to hidden spot near by NFC reader in public transport like subway system. The tag will direct smartphone users to a certain website and automatically downloads malicious codes into their smartphones. The infected devices actually help to spread malicious code using P2P mode and finally as traditional DDoS attack, a certain target will be attacked by them at scheduled time.