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Adebayo P.AP

Adebayo P.

Systems Architect & Robotics Integrator

€941/day
London, GB
8-15 years

Average response time: 1 hour

About Adebayo

How I Help & The Value I Bring


I unblock complex autonomous platform developments. When your R&D pipeline hits a wall because your physical hardware cannot support your proprietary payloads, custom autonomy stacks, or secure communication links, I act as the systems integrator to take your platform from concept to field-ready deployment.

I bridge the critical engineering gap between off-the-shelf unmanned platforms (UAS, UGV, USV) and specialized mission requirements. By handling the complex physical, electrical, and data integration, I allow your software developers and R&D teams to bypass hardware bottlenecks and focus entirely on their core mission.

What Makes Me Stand Out


The Prime Contractor Advantage: With a Master’s in Robotics from King’s College London and deep industry roots, I lead Unmanned Engineering Services (UES). Depending on your project's scope, I operate as an elite plug-in systems architect or scale instantly to a "Prime Contractor" role—mobilizing a vetted, private network of advanced robotics and hardware specialists for high-intensity, rapid engineering sprints.

The Integration Partner Model: I actively partner with cutting-edge software and autonomy creators (such as GNSS-denied navigation developers like FoxFour) to act as their physical integration arm, turning software capabilities into ruggedized, mission-ready deployments for their end-clients.

Zero-Overhead Agility: You get senior, Tier-1 engineering firepower without the long-term overhead of building an internal hardware R&D division.
  • English

    Native or bilingual

Can work on-site
London (up to 50km)

Experience

  • Skyports Drone Services
    Embedded Systems & UAV Integration Engineer
    AVIATION AND AEROSPACE
    April 2026 - June 2026 (2 months)
    Aylesbury, United Kingdom
    Led the development and integration of a remote payload-control system for a commercial heavy-lift UAV.

    The project combined Android application development, embedded Linux, long-range radio communications, serial protocols, hardware integration and field testing.

    My responsibilities included:

    • Developing an offline Android application for payload control, real-time status monitoring, command acknowledgements and event logging
    • Implementing communication between the pilot device, ground radio, airborne computer and payload hardware
    • Developing embedded Linux software for command handling, telemetry processing, fault detection and system logging
    • Integrating RS232, UART and USB serial interfaces
    • Configuring and validating a dedicated long-range radio link
    • Supporting RF coexistence planning, antenna placement and ground range testing
    • Integrating the onboard computer, radio equipment and power electronics into a modular aircraft-mounted enclosure
    • Diagnosing software, communications and hardware integration faults during bench and field testing
    • Producing installation, testing and handover documentation

    The system was successfully integrated onto the aircraft and validated through bench testing, ground trials and operational field testing.

    Technologies: Android, Kotlin/Java, Embedded Linux, Raspberry Pi, RS232, UART, USB Serial, RF Telemetry, IoT, Hardware Integration and UAV Systems.
    UAV Systems Embedded Systems RF Link Budget & Radio System Design
  • Sorair Technologies Ltd
    Creator & Lead Embedded Systems Engineer – AirBeacon
    AVIATION AND AEROSPACE
    November 2025 - January 2026 (2 months)
    Aylesbury, United Kingdom
    Created AirBeacon, an embedded hardware and software integration solution designed to connect uAvionix electronic conspicuity equipment with DJI Dock-based drone operations.

    AirBeacon was developed to support scalable BVLOS deployments by providing real-time airspace-awareness data to remote drone systems and operational software.

    My responsibilities included:

    • Defining the overall product architecture and integration approach
    • Developing the embedded Linux software running on the onboard computer
    • Integrating multiple serial communication interfaces and hardware devices
    • Implementing data acquisition, message parsing and communications between the electronic conspicuity receiver, drone system and cloud platform
    • Designing the hardware enclosure, connector layout and installation approach
    • Configuring Raspberry Pi hardware, UART interfaces and system services
    • Developing a robust, remotely deployable system suitable for unattended DJI Dock operations
    • Integrating AirBeacon with SORANET for real-time airspace monitoring and multi-site operational visibility
    • Supporting prototype manufacture, hardware testing, field deployment and fault diagnosis

    AirBeacon enabled uAvionix electronic conspicuity data to be incorporated into DJI Dock operations, helping provide operators with improved real-time awareness of cooperative aircraft during remote and BVLOS missions.

    Technologies: Embedded Linux, Raspberry Pi, Python, UART, Serial Communications, AWS, IoT, Electronic Conspicuity, ADS-B, UAV Systems and DJI Dock Integration.
    UAV Systems Embedded Systems IoT ADS-B Integration Electronic Conspicuity

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Education

  • Robotics Engineering Masters
    Kings College London
    2024

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