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SIMoT: A Low-fidelity Orchestrator Simulator for Task Allocation in IoT Devices.

, , , , and . DSN-W, page 290-296. IEEE, (2023)

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Visual Self-healing Modelling for Reliable Internet-of-Things Systems., , , , and . ICCS (5), volume 12141 of Lecture Notes in Computer Science, page 357-370. Springer, (2020)Disciplined composition of aspects using tests., and . LATE@AOSD, page 8. ACM, (2008)Visually-defined Real-Time Orchestration of IoT Systems., , , and . MobiQuitous, page 225-235. ACM, (2020)Experimenting with Liveness in Cloud Infrastructure Management., , , , and . ENASE (Selected Papers), volume 1172 of Communications in Computer and Information Science, page 58-82. Springer, (2019)Determining Microservice Boundaries: A Case Study Using Static and Dynamic Software Analysis., , , , , and . ECSA, volume 12292 of Lecture Notes in Computer Science, page 315-332. Springer, (2020)Designing and constructing internet-of-Things systems: An overview of the ecosystem., , and . Internet Things, (2022)SIMoT: A Low-fidelity Orchestrator Simulator for Task Allocation in IoT Devices., , , , and . DSN-W, page 290-296. IEEE, (2023)Automatic Test Case Generation from Usage Information., , , and . QUATIC, page 268-271. IEEE Computer Society, (2018)Programming IoT-Spaces: A User-Survey on Home Automation Rules., , , and . ICCS (4), volume 12745 of Lecture Notes in Computer Science, page 512-525. Springer, (2021)A Review on Visual Programming for Distributed Computation in IoT., , , and . ICCS (4), volume 12745 of Lecture Notes in Computer Science, page 443-457. Springer, (2021)