Docente
Luis Miguel Pires
Biography Vitae
Luís Miguel Pires é Especialista em Telecomunicações pelo Instituto Politécnico de Lisboa, Mestre em Engenharia Eletrotécnica de Computadores pelo Instituto Superior Técnico - 2007, Licenciado em Engenharia Eletrónica, Telecomunicações e Computadores pelo Instituto Superior de Engenharia de Lisboa - 2003. Especialista em Telecomunicações pela Ordem dos Engenheiros, onde é também membro Sénior - 2020. É Professor Adjunto na Escola Superior de Engenharia de Tecnologias do Instituto Politécnico da Lusofonia (IPLuso), desde 2021, onde é Diretor da Licenciatura em Automação e Sistemas Informáticos, e Diretor da Pós Graduação em Engenharia de Automação e Segurança em Sistemas Informáticos e Diretor no CTeSP em Automação e Robótica. e Professor Adjunto Convidado no Departamento de Engenharia Eletrónica Telecomunicações e Computadores do Instituto Superior de Engenharia de Lisboa (ISEL), onde é Orientador de Projetos Finais de Curso e Dissertações de Mestrado, desde 2019. É Consultor Convidado e Team Leader do Prototyping Lab, na empresa Sensefinity desde 2023. Frequentou Doutoramento em Engenharia Eletrotécnica e de Computadores pelo(a) Universidade Nova de Lisboa Faculdade de Ciências e Tecnologia. Frequenta o Doutoramento em Informática e Ciências da Computação na Universidade Lusófona. É Investigador em tempo parcial no Centro de Tecnologias e Sistemas (CTS) na Universidade Nova de Lisboa É/foi orientador de 6 teses de mestrado, bem como de mais de 75 trabalhos finais de curso (licenciatura) no IPLuso e no ISEL. É/foi arguente de teses de mestrado e trabalhos finais de curso (licenciatura) no IPLuso e no ISEL. É autor de mais de 30 artigos em revistas internacionais com revisão por pares. É revisor convidado de revistas internacionais (IEEE, Springer e MDPI). É autor de 5 livros e de mais de 6 capítulos de livros.
Journal Articles
Luis Miguel Pires; José Braga de Vasconcelos. (2026). An Interpretable Agent-Assisted Pipeline for Statistical Anomaly Detection in IoT Temperature Time Series. Electronics. https://www.mdpi.com/2079-9292/15/9/1840
Luis Miguel Pires; Vitor Fialho. (2026). From Statistical Filtering to Adaptive Reinforcement Learning: A Progressive Framework for IoT Time-Series Anomaly Detection. Applied Sciences. https://www.mdpi.com/2076-3417/16/11/5608
Luis Miguel Pires; Ruben Azevedo; Filipa Pires. (2026). System Design of a Low-Power BLE Smart Label SoC with Dynamic E-Paper for QR Rendering and Temperature Sensing. Designs. https://www.mdpi.com/2411-9660/10/3/65
Luis Miguel Pires; Vitor Fialho. (2026). Physics-Supported Linear and Nonlinear Dimensionality Reduction for Supervised Adaptive Channel Selection in Hybrid RF-FSO-THz Communication Systems. Electronics. https://www.mdpi.com/2079-9292/15/13/2778
Luis Pires. (2025). SCORBOT Arm Control using Pseudoinverse Jacobian control for Bézier path. Brazilian Journal of Technology. https://ojs.brazilianjournals.com.br/ojs/index.php/BJT/article/view/76721/53378
Luis Pires; Tiago Alves; Mikil Vassaramo; Vitor Fialho. (2025). Design and Development of a High-Accuracy IoT System for Real-Time Load and Space Monitoring in Shipping Containers. Designs. https://www.mdpi.com/2411-9660/9/2/43
Luis Pires; João Figueiredo; Ricardo Martins; José Manuel dos Santos Martins. (2025). IoT-Enabled Real-Time Monitoring of Urban Garbage Levels Using Time-of-Flight Sensing Technology. Sensors. https://www.mdpi.com/1424-8220/25/7/2152
Luis Pires; João Figueiredo; Ricardo Martins; João Nascimento; José Manuel dos Santos Martins. (2025). Design and Development of a Low-Power IoT System for Continuous Temperature Monitoring. Designs. https://www.mdpi.com/2411-9660/9/3/73
Luis Miguel Pires; Vitor Fialho; Tiago Pécurto; André Madeira. (2025). Towards Smart Wildfire Prevention: Development of a LoRa-Based IoT Node for Environmental Hazard Detection. Designs. https://www.mdpi.com/2411-9660/9/4/91
Luis Miguel Pires; Ileida Veiga. (2025). Design of a Low-Cost and Low-Power LoRa-Based IoT System for Rockfall and Landslide Monitoring. Designs. https://doi.org/10.3390/designs9060144
Nelson Carvalhal Lopes; Ricardo Alexandre Alves Ramos; Luis Miguel Rego Pires. (2024). LoRa Network-based IoT Node for indoor environment monitoring. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv10n5-058
Luis Pires; José Martins. (2024). Design and Implementation of a Low-Power Device for Non-Invasive Blood Glucose. Designs. https://www.mdpi.com/2411-9660/8/4/63
Luis Pires; José Gomes. (2024). River Water Quality Monitoring Using LoRa-Based IoT. Designs. https://www.mdpi.com/2411-9660/8/6/127
André Esteves Santos Alves; Luis Miguel Rego Pires; Luis Carlos Gonçalves. (2023). Development and analysis of new implementations of MAC proto-cols and mobility models in LoRa networks. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv9n3-023
Luis Miguel Rego Pires. (2023). Importance of the effects of spreading factor interference in collisions LoRa radio interface. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv9n5-275
Luis Miguel Rego Pires. (2023). Strategies to reduce power consumption in pico-satellites. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv9n5-277
Luis Miguel Rego Pires. (2023). CSMA Protocol performance with dynamic spreading factor in LPWAN networks with LoRa RF transceivers. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv9n5-276
Pires, Luis M.. (2023). Ultra-Low Power IoT Solution based on WSSN for Monitoring Infrastructures. Engineering: Open Access. http://dx.doi.org/10.33140/eoa.01.01.06
Luis Miguel Pires. (2018). The Importance of Smart Embedded Systems in Industry 4.0. Robotics Magazine . http://rgdoi.net/10.13140/RG.2.2.25096.11525
Luis Miguel Pires; Vitor Fialho. (2026). From Statistical Filtering to Adaptive Reinforcement Learning: A Progressive Framework for IoT Time-Series Anomaly Detection. Applied Sciences. https://www.mdpi.com/2076-3417/16/11/5608
Luis Miguel Pires; Ruben Azevedo; Filipa Pires. (2026). System Design of a Low-Power BLE Smart Label SoC with Dynamic E-Paper for QR Rendering and Temperature Sensing. Designs. https://www.mdpi.com/2411-9660/10/3/65
Luis Miguel Pires; Vitor Fialho. (2026). Physics-Supported Linear and Nonlinear Dimensionality Reduction for Supervised Adaptive Channel Selection in Hybrid RF-FSO-THz Communication Systems. Electronics. https://www.mdpi.com/2079-9292/15/13/2778
Luis Pires. (2025). SCORBOT Arm Control using Pseudoinverse Jacobian control for Bézier path. Brazilian Journal of Technology. https://ojs.brazilianjournals.com.br/ojs/index.php/BJT/article/view/76721/53378
Luis Pires; Tiago Alves; Mikil Vassaramo; Vitor Fialho. (2025). Design and Development of a High-Accuracy IoT System for Real-Time Load and Space Monitoring in Shipping Containers. Designs. https://www.mdpi.com/2411-9660/9/2/43
Luis Pires; João Figueiredo; Ricardo Martins; José Manuel dos Santos Martins. (2025). IoT-Enabled Real-Time Monitoring of Urban Garbage Levels Using Time-of-Flight Sensing Technology. Sensors. https://www.mdpi.com/1424-8220/25/7/2152
Luis Pires; João Figueiredo; Ricardo Martins; João Nascimento; José Manuel dos Santos Martins. (2025). Design and Development of a Low-Power IoT System for Continuous Temperature Monitoring. Designs. https://www.mdpi.com/2411-9660/9/3/73
Luis Miguel Pires; Vitor Fialho; Tiago Pécurto; André Madeira. (2025). Towards Smart Wildfire Prevention: Development of a LoRa-Based IoT Node for Environmental Hazard Detection. Designs. https://www.mdpi.com/2411-9660/9/4/91
Luis Miguel Pires; Ileida Veiga. (2025). Design of a Low-Cost and Low-Power LoRa-Based IoT System for Rockfall and Landslide Monitoring. Designs. https://doi.org/10.3390/designs9060144
Nelson Carvalhal Lopes; Ricardo Alexandre Alves Ramos; Luis Miguel Rego Pires. (2024). LoRa Network-based IoT Node for indoor environment monitoring. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv10n5-058
Luis Pires; José Martins. (2024). Design and Implementation of a Low-Power Device for Non-Invasive Blood Glucose. Designs. https://www.mdpi.com/2411-9660/8/4/63
Luis Pires; José Gomes. (2024). River Water Quality Monitoring Using LoRa-Based IoT. Designs. https://www.mdpi.com/2411-9660/8/6/127
André Esteves Santos Alves; Luis Miguel Rego Pires; Luis Carlos Gonçalves. (2023). Development and analysis of new implementations of MAC proto-cols and mobility models in LoRa networks. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv9n3-023
Luis Miguel Rego Pires. (2023). Importance of the effects of spreading factor interference in collisions LoRa radio interface. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv9n5-275
Luis Miguel Rego Pires. (2023). Strategies to reduce power consumption in pico-satellites. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv9n5-277
Luis Miguel Rego Pires. (2023). CSMA Protocol performance with dynamic spreading factor in LPWAN networks with LoRa RF transceivers. Brazilian Journal of Development. http://dx.doi.org/10.34117/bjdv9n5-276
Pires, Luis M.. (2023). Ultra-Low Power IoT Solution based on WSSN for Monitoring Infrastructures. Engineering: Open Access. http://dx.doi.org/10.33140/eoa.01.01.06
Luis Miguel Pires. (2018). The Importance of Smart Embedded Systems in Industry 4.0. Robotics Magazine . http://rgdoi.net/10.13140/RG.2.2.25096.11525
Outputs
Artigo em revista (magazine):
Pires, Luis M.. (2019). Maintenance management: ideas using robotics in hazardous environments. Revista Manutenção ISSN: 0870-0702
Pires, Luis M.. (2019). Robot controlado por som. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2018). The importance of smart embedded systems in Industry 4.0. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2018). Robotic Arm for Surgical Applications. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2018). Finger Control Robot. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2018). Always standing robot. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2017). Robot Bípede. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2017). Redes de sensores sem fios: aplicações para supervisão e monitorização de infraestruturas. Revista Manutenção ISSN: 0870-0702
Pires, Luis M.. (2017). Principais aspetos sobre manutenção para sistemas industriais. Manutenção ISSN: 0870-0702
Pires, Luis M.. (2017). Omnidirectional Robot using Internet of Things (IoT). Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2017). Crab-Robot. Revista Robótica ISSN: 0874-9019
Luis Pires. (2017). Ultra-Low Power IoT Solution based on WSSN for Monitoring Infrastructures
Pires, Luis M.. (2016). Sistemas ciber-físicos: o futuro da Manutenção Industrial?. Revista Manutenção ISSN: 0870-0702
Pires, Luis M.. (2016). Braço/mão robótica controlado remotamente através de sensores flexíveis. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2015). Dashboard Digital Clássico (DDC). Revista Manutenção ISSN: 0870-0702 Pré-impressão:
2025-03-06. IoT-Enabled Real-Time Monitoring of Urban Garbage Levels Using Time-of-Flight Sensing Technology
2024-11-05. Experimental Insights into the Performance of LoRa/LoRaWAN Radio Interface in Smart City Deployments
2024-08-20. Experimental Investigation of Spreading Factor, Payload Length and Collision Effects in LoRaWAN Radio Interface
2024-06-11. Experimental Study on the Importance of Interference in the Spreading Factor and Effects of Collisions for the LoRaWAN Radio Interface
2024-05-20. Vehicle to Vehicle Communication with LoRa network
2024-05-10. Design and Implementation Low-Power Device for Non-Invasive Blood Glucose
2023-06-21. A/D Conversion with Oversample and Average Based Precision Improvement Edição de número de revista:
2024-10-28. Rivers Water Quality Monitoring Using LoRa Based IoT Tese / Dissertação:
Balona, Bernardo da Silva. (2025). Mestrado. Monitoring quality of air in urban environments using LoRa technology
Balona, Bernardo da Silva. (2025). Mestrado. Monitoring quality of air in urban environments using LoRa technology
Azevedo, Rúben Miguel Paulo. (2025). Mestrado. Desenvolvimento e implementação de uma rede LoRa para monitorização sísmica com sensores acelerómetros
Azevedo, Rúben Miguel Paulo. (2025). Mestrado. Desenvolvimento e implementação de uma rede LoRa para monitorização sísmica com sensores acelerómetros
Balona, Bernardo da Silva. (2025). Mestrado. Monitoring quality of air in urban environments using LoRa technology
Azevedo, Rúben Miguel Paulo. (2025). Mestrado. Desenvolvimento e implementação de uma rede LoRa para monitorização sísmica com sensores acelerómetros
Balona, Bernardo da Silva. (2025). Mestrado. Monitoring quality of air in urban environments using LoRa technology
(2008). Optimisation of UMTS-TDD Base Stations Location for Non-Uniform Traffic Distributions Livro:
Luis Pires. (2024). Design and Implementation of a Low-Power Device for Non-Invasive Blood Glucose
Luis Pires. (2024). Experimental Investigation of Spreading Factor, Payload Length and Collision Effects in LoRaWAN
Luis Pires. (2025). Experimental Insights into the Performance of LoRa/LoRaWAN Radio Interface in Smart City Deployments
Luis Pires. (2025). Robotic Arm Inversion with Python: Modeling and Controlling the SCORBOT ER-V Plus Using Forward and Inverse Kinematics
Luis Miguel Pires. (2025). mmWave and Time-of-Flight Technologies for IoT Capítulo de livro:
(2014). A 0.5 V Ultra-low Power Quadrature Ring Oscillator. Springer Berlin Heidelberg
(2014). Piezoelectric Energy Harvester for a CMOS Wireless Sensor. Springer Berlin Heidelberg
(2023). DEVELOPMENT AND ANALYSIS OF NEW IMPLEMENTATIONS OF MAC PROTO-COLS AND MOBILITY MODELS IN LORA NETWORKS. Brazilian Journals Editora
(2023). IMPORTANCE OF THE EFFECTS OF SPREADING FACTOR INTERFERENCE IN COLLISIONS LORA RADIO INTERFACE. Brazilian Journals Editora
(2023). STRATEGIES TO REDUCE POWER CONSUMPTION IN PICO-SATELLITES. Brazilian Journals Editora
(2023). CSMA PROTOCOL PERFORMANCE WITH DYNAMIC SPREADING FACTOR IN LPWAN NETWORKS WITH LORA RF TRANSCEIVERS. Brazilian Journals Editora
(2025). LoRa Network-based IoT Node for Indoor Environment Monitoring
(2025). DESIGN AND DEVELOPMENT OF A DIGITAL APPLICATION TO SUPPORT THE LEARNING OF STATISTICS IN HIGHER EDUCATION. APPROACHES TO SUSTAINABLE DEVELOPMENT GOALS Artigo em conferência:
Ruben Azevedo; Luis Pires; Vitor Fialho. (2025). Low-Power IoT Seismic Detection with Machine Learning Integration
Pires, Luis Miguel; Oliveira, Joao P.. A Survey on the Application of Parametric Amplification in Next Generation Digital RF Transceivers
Pires, Luis M.. (2019). Maintenance management: ideas using robotics in hazardous environments. Revista Manutenção ISSN: 0870-0702
Pires, Luis M.. (2019). Robot controlado por som. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2018). The importance of smart embedded systems in Industry 4.0. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2018). Robotic Arm for Surgical Applications. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2018). Finger Control Robot. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2018). Always standing robot. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2017). Robot Bípede. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2017). Redes de sensores sem fios: aplicações para supervisão e monitorização de infraestruturas. Revista Manutenção ISSN: 0870-0702
Pires, Luis M.. (2017). Principais aspetos sobre manutenção para sistemas industriais. Manutenção ISSN: 0870-0702
Pires, Luis M.. (2017). Omnidirectional Robot using Internet of Things (IoT). Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2017). Crab-Robot. Revista Robótica ISSN: 0874-9019
Luis Pires. (2017). Ultra-Low Power IoT Solution based on WSSN for Monitoring Infrastructures
Pires, Luis M.. (2016). Sistemas ciber-físicos: o futuro da Manutenção Industrial?. Revista Manutenção ISSN: 0870-0702
Pires, Luis M.. (2016). Braço/mão robótica controlado remotamente através de sensores flexíveis. Revista Robótica ISSN: 0874-9019
Pires, Luis M.. (2015). Dashboard Digital Clássico (DDC). Revista Manutenção ISSN: 0870-0702 Pré-impressão:
2025-03-06. IoT-Enabled Real-Time Monitoring of Urban Garbage Levels Using Time-of-Flight Sensing Technology
2024-11-05. Experimental Insights into the Performance of LoRa/LoRaWAN Radio Interface in Smart City Deployments
2024-08-20. Experimental Investigation of Spreading Factor, Payload Length and Collision Effects in LoRaWAN Radio Interface
2024-06-11. Experimental Study on the Importance of Interference in the Spreading Factor and Effects of Collisions for the LoRaWAN Radio Interface
2024-05-20. Vehicle to Vehicle Communication with LoRa network
2024-05-10. Design and Implementation Low-Power Device for Non-Invasive Blood Glucose
2023-06-21. A/D Conversion with Oversample and Average Based Precision Improvement Edição de número de revista:
2024-10-28. Rivers Water Quality Monitoring Using LoRa Based IoT Tese / Dissertação:
Balona, Bernardo da Silva. (2025). Mestrado. Monitoring quality of air in urban environments using LoRa technology
Balona, Bernardo da Silva. (2025). Mestrado. Monitoring quality of air in urban environments using LoRa technology
Azevedo, Rúben Miguel Paulo. (2025). Mestrado. Desenvolvimento e implementação de uma rede LoRa para monitorização sísmica com sensores acelerómetros
Azevedo, Rúben Miguel Paulo. (2025). Mestrado. Desenvolvimento e implementação de uma rede LoRa para monitorização sísmica com sensores acelerómetros
Balona, Bernardo da Silva. (2025). Mestrado. Monitoring quality of air in urban environments using LoRa technology
Azevedo, Rúben Miguel Paulo. (2025). Mestrado. Desenvolvimento e implementação de uma rede LoRa para monitorização sísmica com sensores acelerómetros
Balona, Bernardo da Silva. (2025). Mestrado. Monitoring quality of air in urban environments using LoRa technology
(2008). Optimisation of UMTS-TDD Base Stations Location for Non-Uniform Traffic Distributions Livro:
Luis Pires. (2024). Design and Implementation of a Low-Power Device for Non-Invasive Blood Glucose
Luis Pires. (2024). Experimental Investigation of Spreading Factor, Payload Length and Collision Effects in LoRaWAN
Luis Pires. (2025). Experimental Insights into the Performance of LoRa/LoRaWAN Radio Interface in Smart City Deployments
Luis Pires. (2025). Robotic Arm Inversion with Python: Modeling and Controlling the SCORBOT ER-V Plus Using Forward and Inverse Kinematics
Luis Miguel Pires. (2025). mmWave and Time-of-Flight Technologies for IoT Capítulo de livro:
(2014). A 0.5 V Ultra-low Power Quadrature Ring Oscillator. Springer Berlin Heidelberg
(2014). Piezoelectric Energy Harvester for a CMOS Wireless Sensor. Springer Berlin Heidelberg
(2023). DEVELOPMENT AND ANALYSIS OF NEW IMPLEMENTATIONS OF MAC PROTO-COLS AND MOBILITY MODELS IN LORA NETWORKS. Brazilian Journals Editora
(2023). IMPORTANCE OF THE EFFECTS OF SPREADING FACTOR INTERFERENCE IN COLLISIONS LORA RADIO INTERFACE. Brazilian Journals Editora
(2023). STRATEGIES TO REDUCE POWER CONSUMPTION IN PICO-SATELLITES. Brazilian Journals Editora
(2023). CSMA PROTOCOL PERFORMANCE WITH DYNAMIC SPREADING FACTOR IN LPWAN NETWORKS WITH LORA RF TRANSCEIVERS. Brazilian Journals Editora
(2025). LoRa Network-based IoT Node for Indoor Environment Monitoring
(2025). DESIGN AND DEVELOPMENT OF A DIGITAL APPLICATION TO SUPPORT THE LEARNING OF STATISTICS IN HIGHER EDUCATION. APPROACHES TO SUSTAINABLE DEVELOPMENT GOALS Artigo em conferência:
Ruben Azevedo; Luis Pires; Vitor Fialho. (2025). Low-Power IoT Seismic Detection with Machine Learning Integration
Pires, Luis Miguel; Oliveira, Joao P.. A Survey on the Application of Parametric Amplification in Next Generation Digital RF Transceivers




