<p>Online event management applications often struggle with issues related to data integrity, security, and trust due to centralized control. Decentralized applications are widely adopted in industries like social networks, offering solutions through transparency and user control. Therefore, a decentralized event management framework that uses blockchain is essential to ensure data protection, immutability, and trustless collaboration. To address these challenges, this paper presents <i>TBSSMC</i>, a decentralized social media application framework. This framework leverages a distributed ledger for secure and reliable data storage which maintains integrity. This framework incorporates smart contract capabilities on the Ethereum Virtual Machine, enabling process automation and secure execution. The framework prototype and its associated algorithms were designed and implemented. Finally, the performance of three primary functions <i>createEvent</i>, <i>joinEvent</i>, and <i>displayEvents</i> was benchmarked using Hyperledger Caliper for 5000 transactions with varying transaction rates. The simulation results indicate that createEvent has an average latency of 10.67&#xa0;s, while joinEvent and displayEvents have an average latency of 10.24 and 9.04&#xa0;s, respectively. The throughput averages for the <i>createEvent</i>, <i>joinEvent</i>, and <i>displayEvents</i> functions are 234 TPS, 238 TPS, and 252 TPS, respectively. The average CPU usage ranges from 5.13 to 31.69%, and the memory consumption averages between 731 and 790&#xa0;MB for the above functions. This ensures that the proposed framework is reliable, secure, scalable, and efficient.</p>

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TBSSMC: a trusted blockchain solution for social media content integrity and performance simulation

  • Madhusudan Naik,
  • Akhilendra Pratap Singh,
  • Nihar Ranjan Pradhan

摘要

Online event management applications often struggle with issues related to data integrity, security, and trust due to centralized control. Decentralized applications are widely adopted in industries like social networks, offering solutions through transparency and user control. Therefore, a decentralized event management framework that uses blockchain is essential to ensure data protection, immutability, and trustless collaboration. To address these challenges, this paper presents TBSSMC, a decentralized social media application framework. This framework leverages a distributed ledger for secure and reliable data storage which maintains integrity. This framework incorporates smart contract capabilities on the Ethereum Virtual Machine, enabling process automation and secure execution. The framework prototype and its associated algorithms were designed and implemented. Finally, the performance of three primary functions createEvent, joinEvent, and displayEvents was benchmarked using Hyperledger Caliper for 5000 transactions with varying transaction rates. The simulation results indicate that createEvent has an average latency of 10.67 s, while joinEvent and displayEvents have an average latency of 10.24 and 9.04 s, respectively. The throughput averages for the createEvent, joinEvent, and displayEvents functions are 234 TPS, 238 TPS, and 252 TPS, respectively. The average CPU usage ranges from 5.13 to 31.69%, and the memory consumption averages between 731 and 790 MB for the above functions. This ensures that the proposed framework is reliable, secure, scalable, and efficient.