Research agenda

Questions that guide the work

Research translates broad aerospace and defense challenges into architectures that can be reasoned about, built, instrumented, and tested.

01

Modular open systems

Applying MOSA principles—well-defined interfaces, modular boundaries, and replaceable components—to an accessible experimental sensor architecture.

02

Sensor discovery and adapters

Defining device identity, capability metadata, drivers, and payload adapters so newly attached sensors can be recognized and normalized.

03

Distributed sensing

Separating mobile sensing nodes from ground-station processing while preserving useful data across RF, Wi-Fi, UART, I²C, SPI, and USB links.

04

Power-aware integration

Treating power distribution, conversion, protection, and INA260 telemetry as part of the system architecture rather than an afterthought.

05

Autonomy testbeds

Building accessible physical platforms for later experiments in sensor fusion, human-machine teaming, and autonomous control.

06

Aerospace systems analysis

Connecting prototype lessons to combat-aircraft mission systems, acquisition, production, survivability, and open-architecture strategy.

Standards pathway

MOSA is the design discipline; OMS, FACE, and SOSA are reference points.

PURiK is not presented as compliant with defense standards. The research instead studies how their ideas—interface control, portable software, hardware profiles, data models, and conformance evidence—can improve a small experimental system.

Documentation program

Evidence under development

System architecture

Functional boundaries, interfaces, data flow, power flow, and deployment views.

Interface control

Device identity, physical and logical interfaces, message definitions, and versioning.

Verification record

Test procedures, observed results, limitations, configuration, and traceability.

Research papers

Technical interpretation of prototype results and their relationship to open-systems practice.