OVERVIEW OF WAREHOUSE TERMINAL ROBOTICIZATION TOOLS Overview of Warehouse Terminal Roboticization Tools

Published in Bulletin of scientific research results · Issue 3, 2026 · Pages 215–225 · Rubric: GENERAL TECHNICAL PROBLEMS AND SOLUTION APPROACH
DOI: https://doi.org/10.20295/2223-9987-2026-3-215-225
Received: 22.05.2026 Accepted: 08.07.2026 Published: 05.10.2026 Language of publication: RUS
Authors
Objective: review of modern means of robotization of warehouse terminals, highlighting key trends in development and implementation features, application of modern capabilities of CAE — programs for modeling the movement of robotic equipment. Methods: an overview of robotic equipment used in warehouse terminals is carried out, the classification of robotization means is given by the mode of movement, features of delivery and storage of goods. The results of simulation modeling of the movement of unmanned forklifts in warehouse conditions are given. Results: modeling of dynamic routing of the movement of forklifts based on the readings of a laser rangefinder are presented. Practical significance: the capabilities of the Matlab software package have been investigated for solving the problem of route planning and validation using a hybrid algorithm with a built-in shortest path search procedure using the Reeds — Shepp method, as well as for solving problems.
robot, gripper, kinematic analysis, dynamic analysis, force transmission ratio, kinematic transmission ratio
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1. Umnov V. P., Kobzev A. A. Promyshlennye roboty i mehatronnye sistemy: montazh, naladka, ispytaniya i obsluzhivanie: uchebnoe posobie / Vladimirskiy gosudarstvennyy universitet im. A. G. i N. G. Stoletovyh. Vladimir: Izd-vo VlGU, 2021. 304 s.

2. Shahvorostov S. A. Roboty v sistemah avtomatizacii: uchebnoe posobie. Krasnoyarsk: Nauchno-innovacionnyy centr, 2016. 110 s. DOI:https://doi.org/10.12731/asu.madi.ru/RSA.2016.110

3. Simonov S. A. Robotizirovannye transportno-nakopitel'nye sistemy dlya vnutricehovoy logistiki // Sklad i tehnika. 2020. № 9. S. 20–23.

4. Titenok A. V. Osnovy robototehniki: ucheb. posobie. Vologda: Infra-Inzheneriya, 2022. 236 s.

5. Smirnov A. B., Timofeev A. N. Promyshlennye i servisnye roboty: ucheb. posobie. SPb., 2019. 139 s.

6. Smirnov Yu. A., Detistov V. A. Datchiki i sistemy pozicionirovaniya mobil'nyh robotov i avtonomnyh transportnyh sredstv: ucheb. posobie dlya vuzov. SPb.: Lan', 2026. 272 s.

7. RMS-sistema: mozg robotizirovannogo sklada i proizvodstva // NISSA Inzhiniring. URL: https://nissa-eng.ru/stati/rms-sistema-mozg-robotizirovannogo-sklada- i-proizvodstva (data obrascheniya: 26.06.2026).

8. Corke P. Robotics, Vision and Control: Fundamental Algorithms. Springer, 2017. 693 r.

9. Robotics, Modelling, Planning and Control / B. Siciliano [et al.]. Springer, 2010. 632 p.