Building-Integrated Photovoltaics: A Technical Guidebook

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Comprehensive resource reviewing the state of the artin wireless identification and sensing systems, proposing several examples of applications

While complying with RF standard and regulations, Wireless Identification and Sensing Systems for Harsh and Severe Environments covers the recent advances in wireless and radio-frequency identification (RFID) systems where severe electromagnetic behavior and harsh conditions are taken into consideration, providing the reader with design rules and methodologies to obtain satisfactory performance and avoid the typical oversights and mistakes that can be made when first approaching this topic.

In addition to examples of real implementations, the book gives a general overview of RFID and wireless technologies as well as their pros and cons in terms of expected performance and future directions of technologies. The perspective and evolution towards IoT solutions and artificial intelligence (AI) are pointed out.

The book furthermore addresses chipless RFID frameworks from the theoretical perspective as well as that of implementation, including examples from scientific literature and commercial solutions. It also describes surface acoustic wave (SAW) sensors in wired and wireless configurations and developments needed to implement the technology.

Wireless Identification and Sensing Systems for Harsh and Severe Environments includes discussion of:

  • Frequency diversity for robust Ultra-High Frequency (UHF)-RFID communication, a key technology for future sensor and actuator devices in the Internet of Things, and harmonic transponders for tracking and sensing
  • Resonator and reflective delay line configurations, and chipless RFID technology for operations in harsh environments
  • Potential of battery-less near-field communication (NFC) sensors using mobile phones as readers in severe environments
  • Chipless RFID channel modeling, considering the spatial multipath channel, 3D bi-static Radar Cross Section (RCS) tag model, and analogue effects

Providing comprehensive coverage of the subject and examples of successful implementations of wireless solutions exploiting RFID technologies and enabling systems for the Internet of Things (IoT), Wireless Identification and Sensing Systems for Harsh and Severe Environments is an essential resource for engineers and PhD students in wireless and RFID technologies.


Table of Contents
Foreword

Preface

Chapter 1: Introduction

Nuria Martín Chivelet

Chapter 2: BIPV Performance Requirements 

Nuria Martín Chivelet, Francesco Frontini, Tjerk Reijenga, Reidar Stølen,  Helen Rose Wilson, Gabriele Eder, Ragni Fjellgaard Mikalsen, Fabio Parolini, Hisashi Ishi, Simon Boddaert, Rebecca Yang, Ana Marcos Castro and Peter Kovacs

Chapter 3: BIPV Products

Francesco Frontini, Pierluigi Bonomo, Nuria Martín Chivelet, Astrid Schneider, and Costa Kapsis

Chapter 4: A Decision-Making Process for BIPV Design

Costa Kapsis, Rebecca Yang, Pabasara Wijeratne, and Nilmini Weerasinghe

Chapter 5: Design of BIPV Envelope and Case Studies

Costa Kapsis, Ana Marcos Castro, and Nuria Martín Chivelet

Chapter 6: Operation and maintenance of BIPV Systems

Nuria Martín Chivelet, Alexander Astigarraga, Maximilian Lugmair, Simon Boddaert

Annex I: Symbols, acronyms and abbreviations

Annex II: List of referenced standards


Editor(s)
Biography

Nuria Martín Chivelet, Ph.D. in Physics, has developed her activity in photovoltaics at the Spanish research center CIEMAT (http://www.ciemat.es), being involved in more than 30 national and European research projects and with scientific and technical production focusing on characterisation and modeling PV and BIPV modules and systems (https://orcid.org/0000-0003-4224-6618). In parallel, she has been a member of several national and international experts' committees on PV and BIPV, such as the standardisation IEC-TC82, CENELEC-CLC/TC 82, and several Tasks within the International Energy Agency PV Power Systems Program (IEA-PVPS) related to BIPV, co-leading Subtask "BIPV Guideliness".

Costa (Konstantinos) Kapsis, Ph.D. Costa Kapsis is an assistant professor in the Department of Civil and Environmental Engineering at the University of Waterloo. He is a building scientist and an architectural engineering educator working in the field of high-performance building design, with a focus on electrification of the built environment, advanced building envelope technologies, digital twins, and daylight. Costa has been involved in the design of more than 30 net-zero energy buildings. He is the co-author of several peer-reviewed publications, book chapters, and international reports and standards.

Francesco Frontini, Professor graduated in construction engineering and architecture, and collaborated with engineering and architecture firms as a project manager from 2007 to 2010. In 2009 he obtained a Ph.D. developing a new multifunctional BIPV façade for solar control. He worked as a post-doc in the Solar façades group at Fraunhofer ISE (Germany), one of the world's largest research institutes. Since 2011, he has been working at the University of Applied Sciences and Arts of Southern Switzerland (SUPSI). He is a Professor of Innovative Building Technology and Sustainable Design and is responsible for the sustainability area of the Department of Architecture and Construction. His research activity has always been supported by experimental work on the design of real buildings and solar envelopes. He is a member of the standardisation bodies SIA, CENELEC and ISO. Since 2021, he has been appointed by the Swiss Federal Office of Energy as Co-Manager of the IEA PVPS Task 15.



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