Comparison Overview
zeroG - AI in Aviation

zeroG - AI in Aviation
Hugo-Eckener-Ring 1, Frankfurt am Main, 60549, DE
Last Update: 27/02/2026
zeroG exists on the intersection of technology, data science and aviation. Our mission is to make the world's aviation data useful and realise healthy, joyful air travel for all people. Our diverse team of data experts helps us to take on problems from fresh angles an...

AeC
Rua Espírito Santo, 871 - Bairro Centro, Belo Horizonte, 30160-031, BR
Last Update: 02/04/2026
A AeC é apontada consistentemente como a líder brasileira na entrega de soluções de experiência do cliente e gestão de processos terceirizados. Servindo as principais marcas do mercado nacional, conquistou nos três últimos anos a posição de Empresa do Ano de BPO pela ...
Compliance Ranges Comparison

zeroG - AI in Aviation







AeC






Benchmark & Cyber Underwriting Signals
Incidents vs IT Services and IT Consulting Industry Avg (This Year)
No incidents recorded for zeroG - AI in Aviation in 2026.
Incidents vs IT Services and IT Consulting Industry Avg (This Year)
No incidents recorded for AeC in 2026.
Incident History - zeroG - AI in Aviation (X = Date, Y = Severity)
zeroG - AI in Aviation cyber incidents detection timeline including parent company and subsidiaries.
Incident History - AeC (X = Date, Y = Severity)
AeC cyber incidents detection timeline including parent company and subsidiaries.
Notable Incidents

zeroG - AI in Aviation

AeC
FAQ
Latest Global CVEs
The GOOSE subscriber component improperly validates the UTC timestamp field in unauthenticated IEC 61850 GOOSE (EtherType 0x88B8) Layer-2 multicast messages. A specially crafted GOOSE frame containing an undersized timestamp field can trigger a heap out-of-bounds read during message processing, causing the process to crash and resulting in a denial-of-service condition.
OpenClaw Dashboard contains a stored cross-site scripting vulnerability that allows unauthenticated remote attackers to execute arbitrary JavaScript in the administrator's browser session by injecting HTML markup into agent transcript messages processed through the sessions API. Attackers can craft a message containing inline event handler payloads such as an img tag with an onerror attribute within the 60-character rendering budget, which is stored in the session transcript and interpolated unsanitized into innerHTML on the default landing page, allowing theft of session tokens and unauthorized calls to authenticated administrative endpoints including agent instruction file modification.
MeshCentral 1.1.21 contains a cross-site WebSocket hijacking protection bypass vulnerability that allows unauthenticated remote attackers to hijack authenticated administrator sessions by exploiting an unconditional early return in the CheckWebServerOriginName() function within webserver.js when self-signed certificates are in use. Attackers can open cross-origin WebSocket connections to any of the twelve WebSocket endpoints, send crafted action commands to exfiltrate the server sessionKey used to sign session cookies, forge session tokens as arbitrary users, and gain full remote control of all managed devices governed by the MeshCentral instance.
The GOOSE parser contains an off-by-one boundary-handling flaw that can be triggered by a single unauthenticated Layer-2 multicast frame on the process bus. When specific GOOSE message fields are processed, the parser advances its internal buffer position incorrectly, resulting in a heap out-of-bounds read. On affected platforms, this condition reliably terminates the subscriber process and causes a denial-of-service.
The GOOSE payload parser contains a boundary handling flaw that can be triggered by a single unauthenticated Layer 2 multicast frame on the process bus. When processing specific payload fields, an attacker controlled inner element length may exceed its enclosing length, causing the parser to over read by one byte. This out-of-bounds read reliably terminates the subscriber process, resulting in a denial-of-service condition.