Latency vs precision: Stability preserving perception scheduling

Fuente: arXiv
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Main Authors: Aldana-López, Rodrigo, Aragüés, Rosario, Sagüés, Carlos
Format: Preprint
Published: 2024
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author Aldana-López, Rodrigo
Aragüés, Rosario
Sagüés, Carlos
author_facet Aldana-López, Rodrigo
Aragüés, Rosario
Sagüés, Carlos
contents In robotic systems, perception latency is a term that refers to the computing time measured from the data acquisition to the moment in which perception output is ready to be used to compute control commands. There is a compromise between perception latency, precision for the overall robotic system, and computational resource usage referred to here as the latency-precision trade-off. In this work, we analyze a robot model given by a linear system, a zero-order hold controller, and measurements taken by several perception mode possibilities with different noise levels. We show that the analysis of this system is reduced to studying an equivalent switching system. Our goal is to schedule perception modes such that stability is attained while optimizing a cost function that models the latency-precision trade-off. Our solution framework comprises three main tools: the construction of perception scheduling policy candidates, admissibility verification for policy candidates, and optimal strategies based on admissible policies.
format Preprint
id arxiv_https___arxiv_org_abs_2401_13585
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Latency vs precision: Stability preserving perception scheduling
Aldana-López, Rodrigo
Aragüés, Rosario
Sagüés, Carlos
Systems and Control
Robotics
Optimization and Control
In robotic systems, perception latency is a term that refers to the computing time measured from the data acquisition to the moment in which perception output is ready to be used to compute control commands. There is a compromise between perception latency, precision for the overall robotic system, and computational resource usage referred to here as the latency-precision trade-off. In this work, we analyze a robot model given by a linear system, a zero-order hold controller, and measurements taken by several perception mode possibilities with different noise levels. We show that the analysis of this system is reduced to studying an equivalent switching system. Our goal is to schedule perception modes such that stability is attained while optimizing a cost function that models the latency-precision trade-off. Our solution framework comprises three main tools: the construction of perception scheduling policy candidates, admissibility verification for policy candidates, and optimal strategies based on admissible policies.
title Latency vs precision: Stability preserving perception scheduling
topic Systems and Control
Robotics
Optimization and Control
url https://arxiv.org/abs/2401.13585