Source Known Identifiers: A Three-Tier Identity System for Distributed Applications
Duran Serkan K{\i}l{\i}\c{c}

TL;DR
This paper presents SKIDs, a three-tier identity system for distributed applications that combines storage efficiency, verifiability, confidentiality, and long-term addressability within a unified framework.
Contribution
The paper introduces a novel three-tier identity system, SKIDs, that unifies multiple identifier properties previously lacking in existing schemes.
Findings
SKIDs provide compact storage and natural ordering for database indexing.
SKEIDs enable zero-lookup verification of origin and integrity.
Secure SKEIDs encrypt identifiers while maintaining UUID compatibility.
Abstract
Distributed applications need identifiers that satisfy storage efficiency, chronological sortability, origin metadata embedding, zero-lookup verifiability, confidentiality for external consumers, and multi-century addressability. Based on our literature survey, no existing scheme provides all six of these identifier properties within a unified system. This paper introduces Source Known Identifiers (SKIDs), a three-tier identity system that projects a single entity identity across trust boundaries, addressing all six properties. The first tier, Source Known ID (SKID), is a 64-bit signed integer embedding a timestamp with a 250-millisecond precision, application topology, and a per-entity-type sequence counter. It serves as the database primary key, providing compact storage (8 bytes) and natural B-tree ordering for optimized database indexing. The second tier, Source Known Entity ID…
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