PROMISE: High-level mission specification for multiple robots
Paper i proceeding, 2020

Service robots, a type of robots that perform useful tasks for humans, are foreseen to be broadly used in the near future in both social and industrial scenarios. Those robots will be required to operate in dynamic environments, collaborating among them or with users. Specifying the list of requested tasks to be achieved by a robotic team is far from being trivial. Therefore, mission specification languages and tools need to be expressive enough to allow the specification of complex missions (e.g., detailing recovery actions), while being reachable by domain experts who might not be knowledgeable of programming languages. To support domain experts, we developed PROMISE, a Domain-Specific Language that allows mission specification for multiple robots in a user-friendly, yet rigorous manner. PROMISE is built as an Eclipse plugin that provides a textual and a graphical interface for mission specification. Our tool is in turn integrated into a software framework, which provides functionalities as: (1) automatic generation from specification, (2) sending of missions to the robotic team; and (3) interpretation and management of missions during execution time. PROMISE and its framework implementation have been validated through simulation and real-world experiments with four different robotic models.

Multiple robot

Recovery actions

Dynamic environments

Industrial scenarios

Service robots

Domain specific languages

Graphical interface

Domain experts

Författare

Sergio García Gonzalo

Göteborgs universitet

Chalmers, Data- och informationsteknik, Software Engineering

Patrizio Pelliccione

Göteborgs universitet

Chalmers, Data- och informationsteknik, Software Engineering

Claudio Menghi

Université du Luxembourg

Thorsten Berger

Chalmers, Data- och informationsteknik, Software Engineering

Göteborgs universitet

Tomas Bures

Univerzita Karlova

Proceedings - International Conference on Software Engineering

02705257 (ISSN)

85-88 3382143
9781450371223 (ISBN)

42nd ACM/IEEE International Conference on Software Engineering, ICSE-Companion 2020
Virtual, Online, South Korea,

Ämneskategorier (SSIF 2025)

Programvaruteknik

Robotik och automation

DOI

10.1145/3377812.3382143

ISBN

9781450371223

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2025-11-21