Optimization of Robotic Liquid Handling as a Capacitated Vehicle Routing Problem

Fuente: arXiv
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Main Authors: Wu, Guangqi, Wang, Runzhong, Coley, Connor W.
Format: Preprint
Published: 2025
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author Wu, Guangqi
Wang, Runzhong
Coley, Connor W.
author_facet Wu, Guangqi
Wang, Runzhong
Coley, Connor W.
contents We present an optimization strategy to reduce the execution time of liquid handling operations in the context of an automated chemical laboratory. By formulating the task as a capacitated vehicle routing problem (CVRP), we leverage heuristic solvers traditionally used in logistics and transportation planning to optimize task execution times. As exemplified using an 8-channel pipette with individually controllable tips, our approach demonstrates robust optimization performance across different labware formats (e.g., well-plates, vial holders), achieving up to a 37% reduction in execution time for randomly generated tasks compared to the baseline sorting method. We further apply the method to a real-world high-throughput materials discovery campaign and observe that 3 minutes of optimization time led to a reduction of 61 minutes in execution time compared to the best-performing sorting-based strategy. Our results highlight the potential for substantial improvements in throughput and efficiency in automated laboratories without any hardware modifications. This optimization strategy offers a practical and scalable solution to accelerate combinatorial experimentation in areas such as drug combination screening, reaction condition optimization, materials development, and formulation engineering.
format Preprint
id arxiv_https___arxiv_org_abs_2506_02795
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Optimization of Robotic Liquid Handling as a Capacitated Vehicle Routing Problem
Wu, Guangqi
Wang, Runzhong
Coley, Connor W.
Optimization and Control
Robotics
We present an optimization strategy to reduce the execution time of liquid handling operations in the context of an automated chemical laboratory. By formulating the task as a capacitated vehicle routing problem (CVRP), we leverage heuristic solvers traditionally used in logistics and transportation planning to optimize task execution times. As exemplified using an 8-channel pipette with individually controllable tips, our approach demonstrates robust optimization performance across different labware formats (e.g., well-plates, vial holders), achieving up to a 37% reduction in execution time for randomly generated tasks compared to the baseline sorting method. We further apply the method to a real-world high-throughput materials discovery campaign and observe that 3 minutes of optimization time led to a reduction of 61 minutes in execution time compared to the best-performing sorting-based strategy. Our results highlight the potential for substantial improvements in throughput and efficiency in automated laboratories without any hardware modifications. This optimization strategy offers a practical and scalable solution to accelerate combinatorial experimentation in areas such as drug combination screening, reaction condition optimization, materials development, and formulation engineering.
title Optimization of Robotic Liquid Handling as a Capacitated Vehicle Routing Problem
topic Optimization and Control
Robotics
url https://arxiv.org/abs/2506.02795