Design and transmission of data structures for industrial robots in digitized industrial systems
Szilágyi, Zoltán
Hajdu, Csaba
Széll, Károly
Galambos, Péter
2025-12-04T09:46:25Z
2025-12-04T09:46:25Z
2025
http://hdl.handle.net/20.500.14044/36306
The increasing integration of industrial robots
into digitized manufacturing systems requires unified,
lightweight, and vendor-independent data models. Existing
frameworks such as the OPC UA Companion Specification
for Robotics offer rich semantics and interoperability
but are computationally intensive, while MQTTbased
approaches provide simplicity and speed at the
cost of structure and meaning. This paper proposes the
Sparkplug Robotics Profile v1, a lightweight extension
to the Sparkplug B standard that bridges this gap by
introducing robot-specific semantics and state management
within an event-driven MQTT architecture. The proposed
model defines structured telemetry (RobotData), command
(RobotCmd), and lifecycle (RobotBirth) message types
using Google Protocol Buffers for efficient transmission
and consistent interpretation across platforms. This approach
enables real-time data exchange, scalable multirobot
coordination, and native compatibility with XRbased
digital-twin environments. The results highlight that
Sparkplug Robotics Profile v1 preserves the simplicity of
MQTT while providing semantic depth comparable to OPC
UA, facilitating interoperable and resource-efficient robot
connectivity from edge to cloud.
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Design and transmission of data structures for industrial robots in digitized industrial systems
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Open access
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Óbudai Egyetem
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2025 November 13.
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Budapest
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Alba Regia Műszaki Kar
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Óbudai Egyetem
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Műszaki tudományok - informatikai tudományok
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industrial robotics
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data models
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OPC UA
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MQTT
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sparkplug b
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digital twin
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XR systems
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Konferenciaközlemény
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PROCEEDINGS of 20th International Symposium on Applied Informatics and Related Areas