Vera Tyrsa

dblp:117/8857 · DBLP profile ↗
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20ranked-venue papers
0as first author
8since 2021 · last 2025
0000-0003-1623-5704ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Systems, architecture and hardware · 17 · 8 since 2021Artificial intelligence and machine learning · 2Graphics, computer vision, multimedia, augmented reality and games · 1
YearPublicationVenuePosition
2025 Robust Nonlinear Control of Laser Scanning System under Stochastic Mechanical Disturbances
abstract
This paper presents a robust nonlinear control strategy for a laser scanner’s actuator operating under stochastic mechanical disturbances. External perturbations are represented as bounded stochastic torque inputs, capturing the aggregate effect of structural imbalance, impacts, or system degradation. Experimental observations of vibration-induced angular fluctuations motivate this modeling choice, highlighting the need for control strategies tolerant to bounded stochastic disturbances resulting from unpredictable mechanical faults. A smooth hyperbolic-based control law is proposed to achieve robust velocity tracking under these uncertain conditions. Global asymptotic stability is formally established through Lyapunov analysis, and simulation results confirm that the proposed method effectively maintains convergence and bounded control effort in the presence of estimated disturbance torque. The formulation is suitable for fault-tolerant control of precision actuators where physical irregularities are difficult to isolate or diagnose in real time.
José A. Núñez-López, Oleg Sergiyenko, Ruben Alaniz-Plata, Dennis Molina-Quiroz, César A. Sepúlveda-Valdez, Fernando Lopez-Medina, David Meza-García, Vera Tyrsa, Wendy Flores-Fuentes, Julio C. Rodríguez-Quiñonez, José Fabián Villa-Manríquez, Fabian Natanael Murrieta-Rico, Marina Kolendovska, Paolo Mercorelli
IECON8
2025 Extrinsic calibration of complex machine vision system for mobile robot
abstract
Autonomous mobile robots are essential in industry, logistics, and service applications, such as infrastructure inspection, where navigation in dark and narrow environments is one of the most challenging tasks. This project presents the design and development of a patented artificial vision system for a mobile robot, which combines a high-precision laser scanner and a stereo-vision system. The objective is to enhance the robot’s surface scanning capabilities in complex environments. The proposed methodology allows to determine the relative position between systems to integrate data of the laser scanner with stereo-vision cameras and inertial sensors , providing robust and accurate environmental perception that enables the characterization of ventilation ducts surface. Experimental results show a mean correspondence error of 7 . 4515 mm in absolute terms for the combined data.
Ruben Alaniz-Plata, Fernando Lopez-Medina, Oleg Sergiyenko, Wendy Flores-Fuentes, Julio C. Rodríguez-Quiñonez, César A. Sepúlveda-Valdez, José A. Núñez-López, David Meza-García, José Fabián Villa-Manríquez, Humberto Andrade-Collazo, Vera Tyrsa
Integr.11
2024 Joint calibration of Machine Vision subsystems for robuster surrounding 3D perception
abstract
To achieve successful autonomous navigation, a vision system that provides continuous and precise three-dimensional data of the system’s surroundings is always needed. An indispensable step in the acquisition of reliable data is the calibration of the system, preferably with a time-efficient and low-complexity approach. In this paper, a robust and efficient calibration method is proposed for the information fusion of a stereo vision system and a Technical Vision System. The proposed methodology achieves an error of xe= 6.9401 mm, ye= 8.0997 mm and ze= 15.1822 mm in 3.0202 seconds of processing time, as proven through experimental results.
Ruben Alaniz-Plata, Fernando Lopez-Medina, Oleg Sergiyenko, José A. Núñez-López, César A. Sepúlveda-Valdez, David Meza-García, José Fabián Villa-Manríquez, Humberto Andrade-Collazo, Wendy Flores-Fuentes, Julio C. Rodríguez-Quiñonez, Vera Tyrsa, Moisés Jesús Castro-Toscano, Paolo Mercorelli
IECON11
2024 Control Strategy for Laser Scanning Systems with Friction and Mechanical Vibration Compensation
abstract
This study presents a robust control strategy to mitigate the effects of friction and mechanical vibrations in a 1-DOF electromechanical actuator for laser scanning systems. Using hyperbolic tangent functions ensures bounded control signals, preventing actuator saturation. Real-time vibration measurements with MPU6050 modules were conducted to characterize the system’s mechanical behavior. The stability of the system is ana-lyzed using the direct Lyapunov method and Barbalat’s lemma, ensuring global asymptotic stability. Simulations demonstrated the control strategy’s effectiveness in improving stability and accuracy. Future work will focus on implementing this control in a physical prototype for validation.
José A. Núñez-López, David Meza-García, Oleg Sergiyenko, Ruben Alaniz-Plata, César A. Sepúlveda-Valdez, José Fabián Villa-Manríquez, Fernando Lopez-Medina, Dennis Molina-Quiroz, Vera Tyrsa, Wendy Flores-Fuentes, Julio C. Rodríguez-Quiñonez, Fabian Natanael Murrieta-Rico, Paolo Mercorelli
IECON9
2024 Integration of laser scanning and projection speckle pattern for advanced pipeline monitoring
abstract
non-contact 3D spatial coordinate measurement systems, based on optical laser scanning as technical vision systems (TVS) for signal processing, are essential methodologies for obtaining topographies in high-risk environments where human exploration is limited. However, these systems have limitations in resolution, particularly when addressing features such as surface texture and small curvatures at edges. Therefore, in this work, we propose the implementation of speckle pattern projection as a complementary innovative solution. Supported by the digital image correlation (DIC) methodology and the use of multivariate methods such as principal component analysis (PCA), we obtain results from different wall surfaces in a pipe prototype. Additionally, we analyze the behavior of the signal received by the 3D scanner sensor, which provides complementary information about the study surface. This demonstrates that the combination of speckle pattern projection and three-dimensional laser scanning is an additional tool for advanced detection of substance material during pipeline monitoring.
José Fabián Villa-Manríquez, Oleg Sergiyenko, César A. Sepúlveda-Valdez, Ruben Alaniz-Plata, José A. Núñez-López, Paolo Mercorelli, Wendy Flores-Fuentes, Julio C. Rodríguez-Quiñonez, Vera Tyrsa, David Meza-García, Fernando Lopez-Medina, Humberto Andrade-Collazo, Moisés Jesús Castro-Toscano
IECON9
2023 Advances in Laser Positioning of Machine Vision System and Their Impact on 3D Coordinates Measurement
abstract
This work presents improvements to a patented 3D laser scanning system with a friction-compensated laser positioning mechanism. By employing a dynamic friction model, the system accurately identifies angular positioning errors through a combination of manual and automatic measurements with different control inputs. The study conducts experiments involving multiple friction cycles and SEM micrograph analysis to compare the microscopic irregularities of steel surfaces before and after friction-based positioning. Parameters of the friction system are derived or estimated from processed input-output test data. A nonlinear control is proposed to compensate for friction effects, resulting in improved positioning accuracy. Experimental implementation using an STM32 board demonstrates a remarkable reduction in the uncertainty of 3D coordinates measured by applying friction-compensated laser positioning. The findings highlight the effectiveness of the proposed friction compensation method, making the 3D laser scanning system more precise and reliable for diverse applications.
José A. Núñez-López, Oleg Sergiyenko, Ruben Alaniz-Plata, César A. Sepúlveda-Valdez, Oscar M. Pérez Landeros, Vera Tyrsa, Wendy Flores-Fuentes, Julio C. Rodríguez-Quiñonez, Fabian Natanael Murrieta-Rico, Paolo Mercorelli, Vladimir M. Kartashov, Marina Kolendovska
IECON6
2023 Laser Scanning Point Cloud Improvement by Implementation of RANSAC for Pipeline Inspection Application
abstract
Laser Scanners used for Structural Health Monitoring applications such as Pipelines Structural Inspections normally needs Point Clouds from a large quantity of individual measurements that should be adjusted or post-processed to decrease overall point-cloud errors depending on scanner's characteristics. The posterior adjustment is commonly addressed by different mathematical methods or computational algorithms. According to application requirements methods such as machine learning, signal filtering, or RANSAC algorithms are used. This paper shows the application of an adapted/modify RANSAC algorithm especially suited for the pipeline inspection task. Aiming to increase the percentage of useful data per capture.
César A. Sepúlveda-Valdez, Oleg Sergiyenko, Ruben Alaniz-Plata, José A. Núñez-López, Vera Tyrsa, Wendy Flores-Fuentes, Julio C. Rodríguez-Quiñonez, Paolo Mercorelli, Marina Kolendovska, Vladimir M. Kartashov, Jesús Elías Miranda-Vega, Fabian Natanael Murrieta-Rico
IECON5
2022 Analysis of the construction of an autonomous robot to improve its energy efficiency when traveling through irregular terrain
abstract
The present work is dedicated to improvement of the energetic efficiency of the mobile robot performing its task of cross-terrain inspections. It was improved by optimization of charge/discharge dynamics in a pair "solar panel-battery". The irradiance intensity was enhanced by additional system design improvement, in order to extend the time of mission performance. The validity of proposed approach was proved in a computational experiment.
Jesus O. Santos-Sanchez, Mauricio A. Rojas-Casas, Oleg Sergiyenko, Julio C. Rodríguez-Quiñonez, Wendy Flores-Fuentes, César A. Sepúlveda-Valdez, Ruben Alaniz-Plata, Vera Tyrsa, Paolo Mercorelli
IECON8
2019 Image compression based on periodic principal components
abstract
In the present paper, the almost periodicity of the first principal components is studied, with the aim of being able to use less information in order to obtain acceptable reconstructions of compressed images. The results of this study show that by working with the periodic principal components of images under analysis, it is possible to obtain an additional reduction to that obtained by using the original principal components. Specifically, it is shown that if the principal components that are considered periodic are replaced by their period plus a trend, it can be said that the reconstruction achieved using these periodic principal components is very close to the reconstruction achieved using the original principal components.
Wilmar Hernandez, Willam Bladimir Cevallos Cevallos, Alfredo Méndez, Pablo Quezada, Luis Alberto Jumbo-Flores, Paolo Mercorelli, Vera Tyrsa, Patricia Acosta-Vargas, Ivan Menes Camejo, Jose Rigoberto Muñoz Cagua
IECON7
2019 A method of image classification by using multidimensional scaling
abstract
In this paper, a method for image classification based on multidimensional scaling (MDS) is presented. Once the image has been fragmented into smaller cells and the wavelet decomposition has also been performed, up to a certain level, statistics are obtained from the new cells with the aim of constructing vectors of characteristics of the original image. Then, these vectors are grouped in a matrix and the MDS of said matrix is performed. Finally, the principal coordinates of the MDS indicate the proximity between vectors and, therefore, between images.
Wilmar Hernandez, Pablo Quezada, Alfredo Méndez, Francisco Ballesteros, Vicente González Posadas, José Luis Jiménez Martin, Vera Tyrsa, Mykhailo Ivanov, Ángel Antonio Ruiz-Pico, Ivan Menes Camejo
IECON7
2019 Research of the Uncertainty of Measurement Frequencies and Definitions of the Frequency Signal in the Waveguide with Respect to Power
abstract
In this work, a method is proposed for measuring the frequency and frequency deviations of a signal in a waveguide with respect to the power sensors embedded in the waveguide. The report contains expressions for estimating the uncertainty of the obtained measurement results. The ways of optimization of the measuring experiment are shown.
Valerii Semenets, Igor Zakharov, Maryna Serhiienko, Vladimir M. Kartashov, Daniel Hernandez Balbuena, Marina Kolendovska, Wilmar Hernandez, Juan I. Nieto-Hipólito, Vera Tyrsa
IECON9
2018 Application of Fast Frequency Shift Measurement Method for INS in Navigation of Drones
abstract
Inertial navigation systems (INS) provide information about position and acceleration of a unmanned aerial vehicle (UAV) or airplanes. There are many types of INS, but most of them share the same principle of operation. We provide in this paper basic information in regard of accelerometers and gyroscopes; then, we demonstrate the effectiveness of our method based on computational experiments to measure the information from the INS. Finally we introduce a method for frequency shift detection and measurement based on pulse coincidence.
Daniel Avalos-Gonzalez, Daniel Hernandez Balbuena, Vera Tyrsa, Vladimir M. Kartashov, Marina Kolendovska, Sergiy Sheiko, Oleg Sergiyenko, Viktor Melnyk, Fabian Natanael Murrieta-Rico
IECON3
2018 Individual Scans Fusion in Virtual Knowledge Base for Navigation of Mobile Robotic Group with 3D TVS
abstract
Robotic group communication in a densely cluttered terrain is one of the main aid to optimize group navigation and come through this sector efficiently. This paper describes the basic set of tasks need to be solved for distributed robotic group behavior. The transferring of data obtained from technical vision system (TVS), which uses the principles of dynamic triangulation, is given. Combination of mentioned methods dovetailing with the presented path planning method can improvement robotic motion planning and navigation in unknown cluttered terrain.
Mykhailo Ivanov, Oleg Sergiyenko, Vera Tyrsa, Paolo Mercorelli, Vladimir M. Kartashov, Wilmar Hernandez, Sergiy Sheiko, Marina Kolendovska
IECON3
2016 UAV remote laser scanner improvement by continuous scanning using DC motors
abstract
Previous research have shown the advantages of a novel Technical Vision System (TVS), developed at the Autonomous University of Baja California (UABC), which uses triangulation to determine spatial coordinates on any object under observation. Present paper proposes a new application for the TVS use on drones with remote laser scanner in agriculture to determine a vegetation index of scanned crops. Thereby the needed algorithm to position the laser ray in the TVS field-of-view are proposed, implemented using microcontroller and tested using various experimental factors. Experimentation results shows the advantages and disadvantages of every algorithm comparing the positioning errors after control.
Lars Lindner, Oleg Sergiyenko, Moises Rivas-López, Benjamín Valdez-Salas, Julio C. Rodríguez-Quiñonez, Daniel Hernandez Balbuena, Wendy Flores-Fuentes, Vera Tyrsa, Misael Medina Barrera, Fabian Natanael Murrieta-Rico, Paolo Mercorelli, Alexander Gurko
IECON8
2016 Resolution improvement of accelerometers measurement for drones in agricultural applications
abstract
In agricultural tasks, monitoring of large fields is required. In the last years automatic/autonomous monitoring has been researched; where unmanned aerial vehicles (UAV)-commonly known as drones-are used. For these systems, constrains related with autonomy during flight arise. In order to control properly the UAVs during flight, they require to measure physical variables, in a fast and accurate way. Also, the weight of instruments must be reduced for improving autonomy. In general, aerial vehicles obtain parameters like position, velocity and acceleration using inertial navigation systems. Regarding to this concern, in this work application of a novel technique for measurements onboard UAVs-particularly inertial measurement unit or IMU-is proposed. There are accelerometers inside the IMU. These accelerometers have a frequency domain output. The speed and position are calculated by the INS from acceleration. The acceleration is obtained from frequency measurements of the accelerometers output. For this reason an accurate and fast frequency measurement method is required. In this work, for this particular application, frequency measurement using principle of rational approximations is proposed. This technique allows to measure frequency in short time and with high accuracy, using a few electronic components. Due this properties, it perfectly fits requirements for UAVs.
Fabian Natanael Murrieta-Rico, Daniel Hernandez Balbuena, Julio C. Rodríguez-Quiñonez, Vitalii Petranovskii, Oscar Raymond-Herrera, Alexander Gurko, Paolo Mercorelli, Oleg Sergiyenko, Lars Lindner, Benjamín Valdez-Salas, Vera Tyrsa
IECON11
2015 Guaranteed Control of a Robotic Excavator During Digging Process
abstract
Automation of excavators offers a promise for increasing productivity of digging. At the same time, it's a highly difficult issue due to presence of various nonlinearities and uncertainties in excavator mechanical structures and hydraulic actuators, disturbance when a bucket contacting the ground etc. This paper concerns the problem of robust trajectory tracking control of an excavator arm. To solve this problem, the computed torque control with the guaranteed cost control is considered. The mathematical tool of R-functions as an alternative to the linear matrix inequality approach to constructing information sets of an excavator arm state is used. Simulation results and functional ability analysis for the proposed control system are given.
Alexander Gurko, Oleg Sergiyenko, Juan I. Nieto-Hipólito, Igor Kirichenko, Vera Tyrsa, Juan De Dios Sánchez-López
ICINCO (2)5
2015 Rational approximations principle for frequency shifts measurement in frequency domain sensors
abstract
Frequency domain sensors (FDS) are important elements in control, data acquisition and monitoring systems. Such sensors have some outstanding characteristics like output of quasi-digital signals, high sensitivity, high resolution, wide dynamic range, anti-interference capacity and good stability. A FDS converts a physical variable (measurand) into a frequency domain ouput. When the measurand changes, the output has a proportional frequency shift. In systems that use FDS, measuring the frequency shift is desirable. Accuracy of most frequency measurement techniques is limited by measurement time, and if more precision is required, longer times for measuring are needed. In this work, a novel approach using the rational approximations principle for measuring frequency shift in the output of a FDS is introduced. Also algorithms for simulating the mathematical model of frequency measurement process are proposed, and resolution of measurement is improved by analyzing the data obtained.
Fabian Natanael Murrieta-Rico, Andrei Tchernykh, Julio C. Rodríguez-Quiñonez, Daniel Hernandez Balbuena, Vitalii Petranovskii, Oscar Raymond-Herrera, Juan I. Nieto-Hipólito, Vladimir M. Kartashov, Oleg Sergiyenko, Wendy Flores-Fuentes, Vera Tyrsa
IECON11
2013 Optimal kinematic control of a robotic excavator with laser TVS feedback
abstract
The problem of optimal kinematic control of an excavator manipulator motion for a given trajectory is considered. The minimizing of the quadratic functional of the angles associated with the respective weights as the optimality criterion is adopted. The efficiency of proposed method is confirmed by numerical example. Offered laser Technical Vision System (TVS) completes the designed controller with necessary tool for effective feedback about manipulator coincidence with desired trajectory.
Oleg Sergiyenko, Daniel Hernandez Balbuena, Alexander Gurko, Igor V. Yanchevskiy, Vera Tyrsa, Moises Rivas-López, Julio C. Rodríguez-Quiñonez
IECON5
2013 Surface recognition improvement in 3D medical laser scanner using Levenberg-Marquardt method
Julio C. Rodríguez-Quiñonez, Oleg Sergiyenko, Félix Fernando González-Navarro, Luis Basaca-Preciado, Vera Tyrsa
Signal Process.5
2012 Robust Control of Excavation Mobile Robot with Dynamic Triangulation Vision
Alexander Gurko, Wilmar Hernandez, Oleg Sergiyenko, Vera Tyrsa, Juan I. Nieto-Hipólito, Daniel Hernandez Balbuena, Paolo Mercorelli
ICINCO (2)4