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PS 26159SOFTWAREBlockchain & CybersecurityHidden GemModerate Scope

SecureMailScope: AI-Assisted Cryptographic Security Posture Assessment for Secure Email Communications

National Technical Research Organisation (NTRO)National Technical Research Organisation (NTRO)
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30-Second Plain English Summary

Enterprise mail servers across government ministries and defense agencies frequently misconfigure TLS encryption, use weak cipher suites (RC4, 3DES), and fail to enforce MTA-STS (Mail Transfer Agent Strict Transport Security) and DANE, leaving diplomatic communications vulnerable to passive wiretapping and Man-in-the-Middle (MITM) downgrade attacks. Build 'SecureMailScope'—an AI-assisted cryptographic security posture assessment platform for NTRO that performs automated scanning of mail servers (SMTP, IMAP, POP3), verifies MTA-STS / DANE DNS records, and generates step-by-step remediation roadmaps.

5-Dimension Strategic ScorecardOverall Score: 4.2 / 5.0
Innovation
4.3 / 5
36h Feasibility
4.3 / 5
Uniqueness
3.7 / 5
Jury Appeal
4.2 / 5
Tech Depth
4.3 / 5
Recommended System Architecture Pipeline
Target Mail Domain -> Asynchronous STARTTLS & Port 25 Probe -> MTA-STS / DANE DNSSEC Resolver -> Cryptographic Strength Rule Engine -> SecureMailScope Audit Console
Recommended Tech StackClick to search similar
Official Government Problem Description
• Background Electronic mail remains one of the most critical communication services for governments, enterprises, financial institutions, and academic organizations. Despite the widespread adoption of Transport Layer Security (TLS), many SMTP, IMAP, and POP3 deployments continue to suffer from cryptographic misconfigurations such as obsolete TLS versions, weak cipher suites, insecure STARTTLS implementations, expired or improperly configured certificates, and non-compliance with modern security standards. These weaknesses expose email infrastructures to downgrade attacks, man-in-the-middle attacks, passive interception, and other cryptographic threats. Although existing network analysis tools provide extensive packet-level visibility, they primarily focus on protocol decoding and traffic inspection. They do not automatically evaluate the overall cryptographic security posture of email communications or provide intelligent risk assessment and prioritization for security analysts. • Description Design and develop an AI-assisted passive network forensic framework capable of analyzing captured network traffic (PCAP files) containing SMTP, IMAP, and POP3 communications to automatically assess the cryptographic security posture of enterprise email infrastructures. The proposed solution shall reconstruct complete email communication sessions, identify encryption transitions, analyze TLS negotiations, validate digital certificates, detect cryptographic weaknesses, and leverage Artificial Intelligence/Machine Learning techniques to classify security risks, detect anomalous TLS behavior, and generate actionable security recommendations. The framework should assist Security Operations Centers (SOC), Digital Forensics teams, Incident Response teams, and enterprise administrators in rapidly identifying cryptographic vulnerabilities, prioritizing remediation efforts, and ensuring compliance with modern cryptographic best practices. • Objectives- The proposed system should be capable of: • Passive analysis of encrypted SMTP, IMAP, and POP3 traffic from PCAP files. • Automatic identification of application-layer email protocols. • Detection of STARTTLS negotiation and encrypted session upgrades. • Reconstruction of complete TCP communication streams. • Parsing and reconstruction of TLS handshakes. • Extraction and validation of X.509 digital certificates. • Identification of negotiated TLS versions, cipher suites, and key exchange mechanisms. • Detection of deprecated protocols, weak cipher suites, insecure cryptographic algorithms, and certificate-related vulnerabilities. • Extraction of cryptographic features for intelligent analysis. • Application of AI/ML techniques for: • Cryptographic risk classification. • Detection of anomalous TLS behavior. • Security posture scoring. • Threat prioritization. • Recommendation of mitigation measures. • Generation of comprehensive forensic reports and security dashboards. Expected Solution/Deliverables: The solution should provide the following outputs: • Automatic identification of SMTP, IMAP, and POP3 protocols. • STARTTLS negotiation detection and validation. • Complete TCP stream reconstruction. • TLS handshake reconstruction. • Detection of negotiated TLS versions. • Identification of negotiated cipher suites. • Identification of key exchange mechanisms. • Extraction of X.509 certificates. • Certificate chain validation. • Certificate expiration analysis. • Public key algorithm and key length analysis. • Digital signature algorithm identification. • Detection of weak cryptographic algorithms and deprecated TLS versions. • Identification of insecure protocol configurations. • Forward Secrecy assessment. • AI-based cryptographic risk scoring. • AI-assisted anomaly detection for suspicious TLS sessions. • Prioritized security findings. • Comprehensive cryptographic security posture assessment. • Exportable forensic reports in JSON, PDF, and HTML formats. • Interactive visualization dashboard for security monitoring and analysis.
AI & PPT Citation Format

Smart India Hackathon 2026 Problem Statement PS-26159: "SecureMailScope: AI-Assisted Cryptographic Security Posture Assessment for Secure Email Communications", Ministry: National Technical Research Organisation (NTRO). Strategy & Architecture via SIH ONE (https://sihone.pages.dev/ps/26159)

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