Eper Teknoloji provides an integrated suite of autonomous aerial systems and decision‑support software for defense and security operators. Its SARP platform fuses sensor, geospatial, and intelligence data into a continuously updated operational picture and delivers ranked routing recommendations with traceable reasoning, while the MEDUSA system links a mothership with parasite drones via low‑latency mesh networking to maintain coordinated autonomy in contested, GPS‑denied environments.
Funding
Funding not disclosed
Founders
Product
Problem
Military and security operators often must plan missions using fragmented sensor, geospatial, and intelligence data, which hampers rapid decision‑making in contested environments. Additionally, deploying coordinated UAV swarms in jamming‑prone or GPS‑denied areas is difficult due to unreliable communications and limited autonomy.
Solution
Eper Teknoloji offers an integrated suite of autonomous aerial systems and decision‑support software to address these challenges. The SARP platform fuses heterogeneous operational data into a continuously updated picture and provides ranked routing recommendations with traceable reasoning, enabling commanders to evaluate routes against threat, terrain, and mission constraints. The MEDUSA system implements a modular swarm architecture that links a mothership with parasite drones via low‑latency peer‑to‑peer mesh networking, maintaining coordinated autonomy even when communications degrade or GPS is denied. For missions requiring higher control authority, the OSKI medium‑range UAV leverages the proven airframe and avionics of MEDUSA while focusing on precise handling and reliable flight performance. Together, these solutions deliver resilient, data‑driven mission planning and execution capabilities for contested operations.
Target Audience
Primary customers are defense agencies, military units, and security organizations that require advanced UAV capabilities and data‑driven mission planning tools for contested or denied environments.
Features
- Multi‑source data fusion engine that ingests sensor feeds, geospatial layers, and intelligence reports into a single operational picture
- Decision‑support dashboards that rank candidate routes and courses of action with transparent, traceable reasoning
- Low‑latency mesh networking enabling real‑time synchronization between a mothership and multiple parasite drones
- Autonomy algorithms that adapt to jamming, GPS denial, and dynamic threat environments without reliance on continuous communications
- Modular UAV designs allowing rapid reconfiguration for different mission profiles
- Proven airframe and avionics heritage shared across platforms to reduce integration risk and ensure dependable performance