IoVセキュリティの強化:接続された車両のネットワーク保護のための新しいセキュア暗号アルゴリズム (OpCKEE)
Sahar Ebadinezhad1,2, Pierre Fabrice Nlend Bayemi3
1Department of Computer Information Systems, Near East University, Nicosia 99138, Northern Cyprus, Turkey.
Sensors (Basel, Switzerland)
|February 13, 2026
まとめ
自動車のインターネットシステムは,セキュリティ上の課題に直面しています. 新しい最適化された無証明書鍵封装暗号アルゴリズムは,通信の安全性を高め,データ保護とシステムの完全性を保証します.
科学分野:
- サイバーセキュリティー サイバーセキュリティー
- ネットワークセキュリティ ネットワークセキュリティ
- クリプトグラフィー クリプトグラフィー 暗号学
背景:
- 自動車のインターネット (IoV) 市場は急速に拡大しており,2028年までに369.61億米ドルに達すると予測されています.
- IoVシステムは,規制,スケーラビリティ,データ管理,接続性,相互運用性,プライバシー,およびセキュリティに関する重要な課題に直面しています.
- 通信セキュリティの強化は,IoVの普及と信頼性の高い運用に不可欠です.
研究 の 目的:
- 車両のインターネットシステムにおけるセキュリティの脆弱性に対処する.
- 安全な IoV 通信のための新しい暗号アルゴリズムを提案し,評価する.
- IoVネットワーク内のデータの信頼性,機密性,完全性,および否定されないことを保証します.
主な方法:
- セキュアな暗号アルゴリズムを実装:最適化された証明書なしの鍵入り暗号化.
- 鍵隔離暗号システムと暗号鍵封入メカニズムを融合させた.
- AVISPA バージョン 1.1 ソフトウェアを使用して公式のセキュリティ分析と非公式の分析を実施しました.
主要な成果:
- 公式の分析により,プロトコルの安全性とセキュリティが確認されました.
- 非公式の分析は,アルゴリズムの信頼性,機密性,整合性,および否定されないことを保証する能力を実証しました.
- 提案されたアルゴリズムは,既存の方法と比較して,計算と通信コストをわずかに改善しています.
結論:
- Optimized Certificateless Key-Encapsulated Encryption アルゴリズムは,自動車のインターネットシステムにおける通信セキュリティを効果的に強化しています.
- アルゴリズムは,さまざまな攻撃に対する強力な保護を提供し,データの完全性とプライバシーを確保します.
- この暗号化ソリューションは,成長する自動車のインターネットのエコシステムの安全な開発と展開に貢献します.
キーワード:
IoVシステム IoVシステム暗号化アルゴリズムの暗号化アルゴリズム公式のセキュリティ分析を行いました.非公式のセキュリティ分析セキュリティー セキュリティー セキュリティー セキュリティーさらに関連する動画
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