Greenhouse Climate Controller by Using of Internet of Things Technology and Fuzzy Logic
暂无分享,去创建一个
Mohamed Benouaret | Farouk Boumehrez | Abdelhakim Sahour | Azzouz Mokhneche | Mohamed Benouaret | A. Sahour | Farouk Boumehrez | Azzouz Mokhneche
[1] A. Negm,et al. Greenhouse Operation and Management in Egypt , 2018 .
[2] S. Wolfert,et al. Big Data in Smart Farming – A review , 2017 .
[3] Hadi Jahanirad,et al. BIST-based Testing and Diagnosis of LUTs in SRAM-based FPGAs , 2018 .
[4] Y Li. Design and implementation of intelligent travel recommendation system based on internet of things , 2018, Ingénierie des Systèmes d Inf..
[5] Sang Hyuk Son,et al. Using fuzzy logic for robust event detection in wireless sensor networks , 2012, Ad Hoc Networks.
[6] Narendra Singh Raghuwanshi,et al. Wireless sensor networks for agriculture: The state-of-the-art in practice and future challenges , 2015, Comput. Electron. Agric..
[7] Andrey Somov,et al. Pervasive Agriculture: IoT-Enabled Greenhouse for Plant Growth Control , 2018, IEEE Pervasive Computing.
[8] S. Siziya,et al. Indoor Air Pollution Related Respiratory Ill Health, a Sequel of Biomass Use , 2019, SciMedicine Journal.
[9] The future of food and agriculture: Trends and challenges , 2016 .
[10] P. Agrawal,et al. A Comparative Study of Wireless Protocols Bandwidth-Efficient Wpan OFDM Protocol with Applications to UWB Communications , 2013 .
[11] Arkady B. Zaslavsky,et al. Context Aware Computing for The Internet of Things: A Survey , 2013, IEEE Communications Surveys & Tutorials.
[12] Riyan Hadi Putra,et al. IoT: smart garbage monitoring using android and real time database , 2019 .
[13] Peter J. Gawthrop,et al. Optimal control of nonlinear systems: a predictive control approach , 2003, Autom..
[14] Big Data: Concept, Potentialities and Vulnerabilities , 2018 .
[15] W. Sutherland,et al. Reaping the Benefits: Science and the sustainable intensification of global agriculture , 2009 .
[16] Kurt K. Benke,et al. Future food-production systems: vertical farming and controlled-environment agriculture , 2017 .
[17] Ye Yu,et al. Toward Secure and Efficient Communication for the Internet of Things , 2019, IEEE/ACM Transactions on Networking.
[18] Azadeh Sharifi Nowghabi,et al. Psychological Influence of Advertising Billboards on City Sight , 2019, Civil Engineering Journal.
[19] Prem Prakash Jayaraman,et al. Dynamic configuration of sensors using mobile sensor hub in internet of things paradigm , 2013, 2013 IEEE Eighth International Conference on Intelligent Sensors, Sensor Networks and Information Processing.
[20] Abderrahmane Hajraoui,et al. Comparative Performance Analysis of Wireless Communication Protocols for Intelligent Sensors and Their Applications , 2014, ArXiv.
[21] Robert LIN,et al. NOTE ON FUZZY SETS , 2014 .
[22] MengChu Zhou,et al. Interference impacts on ZigBee-based Wireless Mesh Networks for building automation and control , 2011, 2011 IEEE International Conference on Systems, Man, and Cybernetics.
[23] M Azaza,et al. Smart greenhouse fuzzy logic based control system enhanced with wireless data monitoring. , 2016, ISA transactions.
[24] Abba Suganda Girsang,et al. Effort Estimation Development Model for Web-Based Mobile Application Using Fuzzy Logic , 2018 .
[25] Leïla Azouz Saïdane,et al. Using Information Centric Networking in Internet of Things: A Survey , 2019, Wireless Personal Communications.
[26] Mohammad Reza Yousefi,et al. A hybrid neuro-fuzzy approach for greenhouse climate modeling , 2010, 2010 5th IEEE International Conference Intelligent Systems.
[27] Li Qing. Application of fuzzy control in greenhouse environment control systems , 2007 .
[28] Yu-Wei Su,et al. A Comparative Study of Wireless Protocols: Bluetooth, UWB, ZigBee, and Wi-Fi , 2007, IECON 2007 - 33rd Annual Conference of the IEEE Industrial Electronics Society.
[29] Gang Wu,et al. Design and implementation of ZigBee wireless sensor and control network system in greenhouse , 2017, 2017 36th Chinese Control Conference (CCC).
[30] Rosdiadee Nordin,et al. Energy-Efficient Wireless Sensor Networks for Precision Agriculture: A Review , 2017, Sensors.
[31] Yang Xianglong,et al. A Design of Greenhouse Monitoring & Control System Based on ZigBee Wireless Sensor Network , 2007, 2007 International Conference on Wireless Communications, Networking and Mobile Computing.
[32] U. Ubaidillah,et al. A fuzzy micro-climate controller for small indoor aeroponics systems , 2019 .
[33] George J. Klir,et al. Fuzzy Sets, Fuzzy Logic, and Fuzzy Systems - Selected Papers by Lotfi A Zadeh , 1996, Advances in Fuzzy Systems - Applications and Theory.
[34] Alessandro Bonadonna,et al. The Millennials’ Concept of Sustainability in the Food Sector , 2019, Sustainability.
[35] I. Hameed,et al. Advances in greenhouse automation and controlled environment agriculture: A transition to plant factories and urban agriculture , 2018 .
[36] Mahmoud Omid,et al. Comparison of fuzzy and on/off controllers for winter season indoor climate management in a model poultry house , 2015, Comput. Electron. Agric..
[37] Amit Chhabra,et al. Emerging Wireless Standards - WiFi, ZigBee and WiMAX , 2007 .
[38] Alaa Sagheer,et al. A Cloud-Based IoT Platform for Precision Control of Soilless Greenhouse Cultivation , 2020, Sensors.
[39] Sarmad Ullah Khan,et al. Future Internet: The Internet of Things Architecture, Possible Applications and Key Challenges , 2012, 2012 10th International Conference on Frontiers of Information Technology.
[40] Dimosthenis Kyriazis,et al. Internet of Medical Things (IoMT): Acquiring and Transforming Data into HL7 FHIR through 5G Network Slicing , 2019, Emerging Science Journal.
[41] T. Thyagarajan,et al. ANN based modeling and control of GHS for winter climate , 2017, 2017 Trends in Industrial Measurement and Automation (TIMA).
[42] V. Corte,et al. Scientific development of smart farming technologies and their application in Brazil , 2017 .
[43] Alicia M. Gibb,et al. NEW MEDIA ART, DESIGN, AND THE ARDUINO MICROCONTROLLER: A MALLEABLE TOOL , 2010 .