Aditi Singh |Robotics| Best Researcher Award

Dr. Aditi Singh |Robotics| Best Researcher Award

Cleveland State University,United States

Aditi Singh is a student at Cleveland State University in the United States. She is currently pursuing her academic goals with a focus on [your field of study or interest, if known]. Aditi is passionate about [mention any specific interests or areas of expertise, if applicable] and is committed to contributing positively to her community and future career.

Summary:

Xiaohong Zheng is an accomplished researcher with a strong track record in materials science, particularly in the development of advanced gas sensors. His work on novel materials and their applications for detecting harmful gases like NO2 demonstrates significant scientific and practical value. He is recognized as an excellent teacher and mentor and has successfully led funded research projects. His ability to innovate, collaborate, and secure funding highlights his leadership in the field.

 

Professional Profiles:

 Scopus

🎓 Education :

Dr. Aditi Singh has an extensive academic background in computer science:,Ph.D. in Computer Science (2023) from Kent State University, focusing on “A Synchronized Colored Petri Net Modeling for Automated Identification and Learning of Conversational Gestures.”,M.S. in Computer Science (2017) from Kent State University, with research on automated gesture generation.,Bachelor of Engineering in Computer Science (2013) from Sathyabama University, India, graduating summa cum laude with a Gold Medal as the university top rank holder.

 

🏢 Experience:

Dr. Singh currently serves as an Assistant College Lecturer at Cleveland State University, where she teaches graduate and undergraduate courses such as algorithms, database systems, and programming languages. Her prior roles include:,Graduate Assistant at Kent State University, teaching artificial intelligence and programming.,Intern at MathWorks Inc., contributing to a Model-Based System Engineering product.,Programmer Analyst at Cognizant Technology Solutions, specializing in data transformation and warehousing.

🛠️Skills:

Dr. Singh possesses a diverse skill set, including:,Computer Aided Design In Mechanical Engineering: Expertise in modeling, gesture recognition, and large language models.,Programming: Proficient in multiple languages and frameworks for developing hybrid and online education tools.,Data Analytics and Visualization: Specializes in ETL processes and metadata management.,Leadership: Founding Chair of ACM-W Student Chapter and a former president of the Computer Science Graduate Student Association at Kent State University.

 

Research Focus :

Dr. Singh’s research delves into:,Computer Aided Design In Mechanical Engineering and Human-Computer Interaction: Gesture recognition and conversational modeling for social robots.,Educational AI: Developing innovative methods to teach AI concepts to K-12 students.,Applied AI and Big Data: Surveys on emotional AI frameworks, large language models, and big data challenges.

 

🔬Awards:

Dr. Singh’s accomplishments include:2024 AnitaB.org Advancing Inclusion Scholarship Award.,2023 Best Presenter Award at IEEE CCWC.,Multiple travel and volunteer awards for contributions to academic communities.,Finalist for the Best Paper Award in 2018.

 

Conclusion:

Given his solid research output, teaching excellence, and leadership in securing funding, Xiaohong Zheng is certainly a strong candidate for the Best Researcher Award. His contributions to the development of advanced sensing technologies, along with his academic and research leadership, position him as a promising figure in the field of materials science and sensor technology.

 

 Publications:

  • “A Survey of AI Text-to-Image and AI Text-to-Video Generators”
    • Citations: 20
    • Year: 2023

 

  • “Revolutionizing Mental Health Care through LangChain: A Journey with a Large Language Model”
    • Citations: 15
    • Year: 2024

 

  • “A Comparison Study on AI language detector”
    • Citations: 7
    • Year: 2023

 

  • “Exploring Language Models: A Comprehensive Survey and Analysis”
    • Citations: 5
    • Year: 2023

 

  • “Transdisciplinary AI Education: The Confluence of Curricular and Community Needs in the Instruction of Computer Aided Design In Mechanical Engineering”
    • Citations: 5
    • Year: 2023

 

  • “Towards Synchronous Model of Non-emotional Conversational Gesture Generation in Humanoids”
    • Citations: 5
    • Year: 2021

 

  • “Declarative modeling and implementation of robotic head-based gestures for human-robot interaction”
    • Citations: 4
    • Year: 2019

 

  • “Synchronous Colored Petri Net Based Modeling and Video Analysis of Conversational Head-Gestures for Training Social Robots”
    • Citations: 3
    • Year: 2021

 

  • “Automated Real-Time Recognition of Non-emotional Conversational Head-Gestures for Social Robots”
    • Citations: 2
    • Year: 2022

 

  • “Enhancing AI Systems with Agentic Workflows Patterns in Large Language Model”
    • Citations: 1
    • Year: 2024

 

  • “Exploring Fine-Grained Feature Analysis for Bird Species Classification using Layer-wise Relevance Propagation”
    • Citations: 1
    • Year: 2024

 

  • “Digital Diagnostics: The Potential Of Large Language Models In Recognizing Symptoms Of Common Illnesses”
    • Citations: 1
    • Year: 2024

 

  • “An Integrated Analysis for Identifying Iconic Gestures in Human-Robot Interactions”
    • Citations: 1
    • Year: 2024

 

  • “Design of a Novice-Friendly Drone Control System”
    • Citations: 1
    • Year: 2024

 

  • “An Integrated Model for Automated Identification and Learning of Conversational Gestures in Human–Robot Interaction”
    • Citations: 1
    • Year: 2023

 

  • “Synchronized Colored Petri Net Based Multimodal Modeling and Real-Time Recognition of Conversational Spatial Deictic Gestures”
    • Citations: 1
    • Year: 2023

 

 

Antonio Guerrero-González| Robotics and Automation| Best Researcher Award

Mr . Antonio Guerrero-González| Robotics and Automation| Best Researcher Award

 Mr . Antonio Guerrero-González ,Universidad Politécnica de Cartagena,Spain

Mr. Antonio Guerrero-González is a distinguished academic at the Universidad Politécnica de Cartagena, Spain. With extensive experience in his field, he has made significant contributions to both teaching and research. His expertise and dedication have earned him a respected position within the academic community.

Professional Profiles:

Scopus

Research Activity, Knowledge Transfer and Exchange:

Proyectos de Investigación y Transferencia e Intercambio del Conocimiento

Proyectos

  1. Proyecto Cátedra Industria 4.0:
    • Entidad: Centro de Acústica Aplicada y Evaluación No Destructiva; Instituto de Fomento de la Región de Murcia
    • Investigador Principal: Guerrero González
    • Institución: Universidad Politécnica de Cartagena
    • Duración: 01/01/2022 – 20/06/2023

Underwater Robotics for Obtaining Bionomic Cartography of UGAP2 areas:

  • Entidad: Autoridad Portuaria de Cartagena
  • Investigador Principal: Guerrero González
  • Institución: Universidad Politécnica de Cartagena
  • Duración: 20/12/2021 – 31/12/2022
  • Financiación: 15.000

Industry 4.0 Chair Project:

  • Investigador Principal: Guerrero González
  • Institución: Universidad Politécnica de Cartagena
  • Duración: 01/01/2019 – 31/12/2020
  • Financiación: 40.000

Automation and Control with Industry 4.0 Technologies of EBA Type Concrete Plants:

  • Entidad: FRUMECAR S.L.
  • Investigador Principal: Antonio Guerrero González
  • Duración: 10/07/2017 – 10/10/2017
  • Financiación: 8.500t

Research activity:

1 Artículo científico. (1/5) Guerrero-Gonzalez, Antonio (AC); Garcia-Cordova, Francisco;
Ortiz, Francisco J.; Alonso, Diego; Gilabert, Javier. 2016. A multirobot platform based
on autonomous surface and underwater vehicles with bio-inspired neurocontrollers for
long-term oil spills monitoring. Autonomous Robots. Springer. 40-5, pp.1321-1342. ISSN
0929-5593. WOS (2), SCOPUS (4) https://doi.org/10.1007/s10514-016-9602-0
2 Artículo científico. Francisco; Antonio; Fernando Mauricio. 2024. Anthropomorphic
Tendon-Based Hands Controlled by Agonist–Antagonist Corticospinal Neural
Network. Sensors. MDPI. 24-2924, pp.1-32.
3 Artículo científico. Francisco; Antonio; Joaquin; Andrés. 2023. Simultaneous
Sensing and Actuating Capabilities of a Triple-Layer Biomimetic Muscle for Soft
Robotics. Sensors. MDPI. 23-9132, pp.1-31.
4 Artículo científico. M.; A; I; A.; Y.2022. Reinforcement Learning Based Transmission
Parameter Selection and Energy Management for Long Range Internet of
Things. Sensors. MDPI. 22-5662.
5
5 Artículo científico. Antonio; Daniel; Samuel. 2021. Assessment of the Degree of
Implementation of Industry 4.0 Technologies: Case Study of Murcia Region in
Southeast Spain. Inzinerine Ekonomika-Engineering Economics. Kaunas University of
Technology. 32-5, pp.422-432.
6 Artículo científico. M.; A.; I; Y.2021. UAV-Enabled Mobile Edge-Computing for IoT Based
on AI: A Comprehensive Review. Drones. MDPI. 148-5.
7 Artículo científico. Salhaoui M.; Guerrero-González A.; Arioua M.; Ortiz F.; El Oualkadi A.;
Torregrosa C.2019. Smart industrial iot monitoring and control system based on UAV and
cloud computing applied to a concrete plant. Sensors (Switzerland). 19-3316, pp.1-26. ISSN
14248220. SCOPUS (3) https://doi.org/10.3390/s19153316
8 Artículo científico. Enguix IF; Sánchez Egea M; Guerrero González A;
Arenas Serrano D. 2019. Underwater Acoustic Impulsive Noise Monitoring
in Port Facilities: Case Study of the Port of Cartagena.Sensors (Basel,
Switzerland). 19-4672. https://doi.org/10.3390/s19214672
9 Artículo científico. González-Reolid I.; Molina-Molina J.; Guerrero-González A.; Ortiz
F.; Alonso D.2018. An autonomous solar-powered marine robotic observatory for
permanent monitoring of large areas of shallow water. Sensors (Switzerland). 18. ISSN
14248220. https://doi.org/10.3390/s18103497
10 Artículo científico. Ortiz F.; Guerrero A.; Sánchez-Ledesma F.; García-Córdova
F.; Alonso D.; Gilabert J.2015. Diseño del software de control de un
UUV para monitorización oceanográfica usando un modelo de componentes
y framework con despliegue flexible. RIAI – Revista Iberoamericana de
Automatica e Informatica Industrial. 12, pp.325-337. ISSN 16977912. SCOPUS
(1) https://doi.org/10.1016/j.riai.2015.06.003
11 Artículo científico. García-Córdova F.; Guerrero-González A.2013. Intelligent
navigation for a solar powered unmanned underwater vehicle. International
Journal of Advanced Robotic Systems. 10. ISSN 17298806. WOS (8), SCOPUS
(10) https://doi.org/10.5772/56029
12 Artículo científico. (1/4) Antonio Guerrero González (AC); Francisco García Cordova;
Inocencio González Reolid; Nápoli Gómez Ramirez. 2012. A Biologically Inspired
Neural Network for Solar Powered Autonomous Surface Vehicles. American Journal
of Intelligent Systems. scientific & Academic Publishing. 2-5, pp.93-103. ISSN
2165-8978. https://doi.org/10.5923/j.ajis.20120205.03
13 Artículo científico. Guerrero-González A.; García-Córdova F.; Ruz-Vila F.2010. A
solar powered autonomous mobile vehicle for monitoring and surveillance missions of
long duration. International Review of Electrical Engineering. 5, pp.1580-1587. ISSN
18276660. WOS (4), SCOPUS (7)
14 Artículo científico. 2008. Neural Control System for Autonomous Vehicles. Encyclopedia of
Computer Aided Design In Mechanical Engineering. IGI Global. pp.1197-1204. ISBN 9781599048499. https://doi.org/DOI:
10.4018/978-1-59904-849-9.ch175
15 Artículo científico. Pedreño-Molina J.; Guerrero-González A.; Calabozo-Moran J.;
López-Coronado J.; Gorce P.2007. A neural tactile architecture applied to real-time stiffness
estimation for a large scale of robotic grasping systems. Journal of Intelligent and Robotic
Systems: Theory and Applications. Springer. 49, pp.311-323. ISSN 09210296. WOS (10),
SCOPUS (17) https://doi.org/10.1007/s10846-006-9040-x