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Sousan Tarahomi

Publications and source records attributed to Sousan Tarahomi.

2 recordsLinked to original sources

Are We All in a Truman Show? Spotting Instagram Crowdturfing through Self-Training

Influencer Marketing generated $16 billion in 2022. Usually, the more popular influencers are paid more for their collaborations. Thus, many services were created to boost profiles' popularity metrics through bots or fake accounts. However, real people recently started participating in such boosting activities using their real accounts for monetary rewards, generating ungenuine content that is extremely difficult to detect. To date, no works have attempted to detect this new phenomenon, known as crowdturfing (CT), on Instagram. In this work, we propose the first Instagram CT engagement detector. Our algorithm leverages profiles' characteristics through semi-supervised learning to spot accounts involved in CT activities. Compared to the supervised approaches used so far to identify fake accounts, semi-supervised models can exploit huge quantities of unlabeled data to increase performance. We purchased and studied 1293 CT profiles from 11 providers to build our self-training classifier, which reached 95\% F1-score. We tested our model in the wild by detecting and analyzing CT engagement from 20 mega-influencers (i.e., with more than one million followers), and discovered that more than 20% was artificial. We analyzed the CT profiles and comments, showing that it is difficult to detect these activities based solely on their generated content.

cs.SI↗

A Lightweight Adaptable DNS Channel for Covert Data Transmission

Due to the vital role of security in online communications and this fact that attackers are developing their tools, modernizing the security tools is an essential. The efficiency of crypto systems has been proven after years, however one may need to communicate stealthy without drawing attention especially in transferring secret data such as keys. Covert channels are suitable tools that used to conceal the existence of data besides end communication parties by employing principles of steganography. They can make secure communications with obscurity. Working stealthy and providing an acceptable throughput are issues in designing covert channels. The DNS protocol properties like its necessity for running applications and the availability can provide aforementioned issues decently. In this paper, we proposed a storage covert channel which uses DNS protocol as a media for transferring data. The key features include connection establishment, adaptability with network environment, implying a lightweight obfuscation method and HMAC to meet confidentiality and integrity. Experimental results show the proposed channel statistics are well adapted with normal traffics. The channel has an average capacity of 2.65 bytes of data per packet.

cs.CR↗