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PV Array Based Smart Home Automation System

Year 2018, Volume: 6 Issue: 3, 183 - 190, 31.07.2018
https://doi.org/10.17694/bajece.420722

Abstract

The
utilization of renewable energy sources have been increasing day by day. Solar,
wind, biomass, wave, etc. are some of the renewable energy sources. Solar, wind
and hydro are more commonly used than others. Solar energy has many advantages
such as abundance, renewability, continuation, and pollution free etc. Advancing
technology increases people’s life standards. Over time, high life standards
have stopped being a luxury and entered people’s homes with smart home
automation systems. With the advances in Internet technologies, people now
expect to be able to control their homes and workplaces over the Internet too.
This study controls six different Computer/Internet-based systems of smart home
automation in a house which is included solar arrays. These systems were
illumination of three different rooms, temperature control of a room, garden
irrigation system control, and home security system control. With the software
written, all these systems were monitored online on a website. These controls
were successfully experimented on the model house with the smart home
automation system designed.

References

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  • [2] Işık, Hakan, ve A. Alpaslan Altun, "Mikrodenetleyici Kullanılarak Cep Telefonu Kontrollü Akıllı Ev Uygulaması."
  • [3] U.Bekçibaşı ve M.Tenruh, “Telefon Şebekesi Üzerinden Şifre GüvenlikliAkıllı Ev Kontrol Sistemi”, 13.( Akademik Bilişim’11), 2-4, Malatya, Şubat, 2011.
  • [4] K.İnan ve M.Ali Akçayol, “GSM Tabanlı Akıllı Ev Uygulaması”, Bilişim Teknolojileri Dergisi, Cilt: 2, Sayı: 2, Mayıs 2009.
  • [5] B.Cincirop, “Gsm Kontrollü Akıllı Ev Otomasyonu”, Sakarya Üniversitesi Elektronik ve Bilgisayar Eğitimi Yüksek Lisans Tezi, 2009.
  • [6] T.Aydoğan, A.Çakır, M.A.Akça ve Y.E.Polat, “Telefonu İle Çağrı Otomasyonu”.
  • [7] C.Can, A.İpek, E.Azapoğlu ve R.O.Türker, “Lazer Güvenlik Sistemi ve Gsm Haberleşme”, MYO-OS 2010- Ulusal Meslek Yuksekokulları Oğrenci Sempozyumu.
  • [8] İ.Çayıroğlu ve S.Görgünoğlu, “Mobil Telefon ve Pic Mikrodenetleyici Kullanarak Uzaktan Esnek Kontrol Sağlanması”, Int.J.Eng.Research&Development,Vol.2,No.1, January 2010.
  • [9] O.Tosunoğlu ve M.Göktürk, “Akıllı Ev Sistemlerinde Ethernet Üzerinden Cihaz Kontrolü Ve İzlenmesi”, ELECO’2008, Elektrik-Elektronik-Bilgisayar Mühendisliği Sempozyumu ve Fuarı.
  • [10] F.Kahraman ve A.F.Boz, “Web Tabanlı Otomasyon Sistemi Tasarımı ve Yapımı”, 5. (IATS’09), 13-15, Karabük, Türkiye, Mayıs 2009.
  • [11] S.T.Bushby, BACnet: a standard communication infrastructure for intelligent buildings, Automation in Construction 6 (1997) 529–540.
  • [12] A.Kaklauskas, E.K. Zavadskas, Internetinė sprendimų parama (Web-based decision support), monograph, Technika, Vilnius, 2002, 216 pp. [in Lithuanian].
  • [13] İ.Yabanova, S.Taşkın, H.Ekiz ve H.Çimen, “Denetleyici Alan Ağı Üzerinden Mekatronik Bir Sistemin Kontrolü”, Makine Teknolojileri Elektronik Dergisi, Cilt: 7, No: 2, 2010.
  • [14] L.Birgül ve G.Cansever, “Mikrokontrollör ile Akıllı Ev Otomasyonu ve Bilgisayar Arayüzü”, ELECO’2008, Elektrik-Elektronik-Bilgisayar Mühendisliği Sempozyumu ve Fuarı.
  • [15] U.Bayram, “Akıllı Ev Otomasyonu”, Çanakkale Onsekiz Mart Üniversitesi Bilgisayar Bölümü Yüksek Lisans Tezi, 2006.
  • [16] G.Arslanoğlu, “Rf Ev Otomasyonu”, Gazi Üniversitesi Elektrik-Elektronik Mühendisliği Yüksek Lisans Tezi, 2009.
  • [17] H.Korkmaz, “Akıllı Ev Otomasyonunun Mikrodenetleyici ile Gerçekleştirilmesi”, Yıldız Teknik Üniversitesi Elektrik Mühendisliği Yüksek Lisans Tezi, 2007.
  • [18] F.Cem Uzun, “Akıllı Binalarda Otomasyon”, Makine Mühendisliği Yüksek Lisans Tezi, 2009.
  • [19] M.T.Gençoğlu, “Akıllı evler”, I.Mühendislik ve Teknoloji Sempozyumu (2008), pp.221-234.
  • [20] A.Kaklauskas, E. Zavadskas, R. Ditkevičius, An intelligent tutoring system for construction and real estate, Lecture Notes in Computer Science, 4101, (2006), pp1.74–181.
  • [21] J.-H. Park, H.-S. Park, S.-J. Lee, J. Choi, D.-G. Lee, Intelligent multimedia service system based on context awareness in smart home, Lecture Notes in Computer Science, 3681, (2005), pp.1146–1152.
  • [22] K.Schacht, New developments: smart materials (cutting edge, shape–memory properties, column), Appliance Manufacturer, 52, (1), (2004),pp. 14–16.
  • [23] T.Staedter, The smart antenna (Visualize, brief article), Technology Review Cambridge, 106, (1), (2003),pp. 81–82.
  • [24] J.Wong, H. Li, J. Lai, Evaluating the system intelligence of the intelligent building systems: Part 1: development of key intelligent indicators and conceptual analytical framework, Automation in Construction, 17, (3), (2008), pp. 284–302.
  • [25] H.W. Kua, S.E. Lee, Demonstration intelligent building—a methodology for the promotion of total sustainability in the built environment, Building and Environment, 37, (3), (2002),pp.231–240.
  • [26] J.K.W. Wong, H. Li, S.W. Wang, Intelligent building research: a review, Automation in Construction, 14, (1), (2005),pp.143–159.
  • [27] J.Neelamkavil, Automation in the prefab andmodular construction industry, 2009— 26th International Symposium on Automation and Robotics in Construction (ISARC 2009) Austin, Texas, USA, June 24–27, 2009, pp. 299–306.
  • [28] Z.Chen, D. Clements-Croome, J. Hong, H. Li, Q. Xu, A multicriteria lifespan energy efficiency approach to intelligent building assessment, Energy and Buildings, 38, (5),(2006),pp.393–409.
  • [29] H.Arkin, M. Paciuk, Evaluating intelligent building according to level of service system integration, Automation in Construction, 6, (1997),pp.471–479.
  • [30] J.Naimavičienė, Intelligent knowledge and device based assisted residential environment: doctoral dissertation: technological sciences, civil engineering (02T), Vilnius Gediminas Technical University, Technika, Vilnius, (2008), pp.134
  • [31] H.Şahin ve O.Hazer, “Akıllı Konut Teknolojileri”, Gazi Üniversitesi Endüstriyel Sanatlar Eğitim Fakültesi Dergisi, Sayı:269, Mayıs 2010.
  • [32] G.Wood, M. Newborough, Energy-use information transfer for intelligent homes: enabling energy conservation with central and local displays, Energy and Buildings, 39, (2007),pp.495–503.
  • [33] A.M.Omer, Renewable building energy systems and passive human comfort solutions. Renewable and sustainable, Energy Reviews, 12, (6),(2008),pp.1562–1587.
  • [34] D.W.Seward, S.D. Quayle, System architectures and safety for mobile construction robots, 13th Int. Symp. on Robotics in Construction, Tokyo, Japan, June 1996, pp. 727–732.
  • [35] C.Soungho, K. Naruo, Application of location information by stereo camera images to project progress monitoring, ISARC 2007, September 2007, 24th International Symposium on Automation and Robotics in Construction, Indian Institute of Technology Madras, Kochi, India, September 2007, pp. 89–92.
  • [36] G.J.Ríos-Moreno, M. Trejo-Perea, R. Castañeda-Miranda, V.M. Hernández-Guzmán, G. Herrera-Ruiz, Modelling temperature in intelligent buildings by means of autoregressive models, Automation in Construction, 16, (5), (2007),pp.713–722.
  • [37] C.E. Ochoa, I.G. Capeluto, Strategic decision-making for intelligent buildings: comparative impact of passive design strategies and active features in a hot climate, Building and Environment, 43, (11), (2008), pp.1829–1839.
  • [38] O.Woodman, R. Harle, RF-based initialisation for inertial pedestrian tracking, in: H. Tokuda, et al., (Eds.), Pervasive Computing, 7th International Conference, Pervasive 2009, Nara, Japan, May 11–14, 2009, Proceedings. Lecture Notes in Computer Science, 5538, Springer, 2009, pp.238–255.
  • [39] NanoLOC TRX - High Performance RF Transceiver with Location Awareness and Robust Wireless Communication, Fact Sheet. In http://www.nanotron.com/EN/pdf/Factsheet_nanoLOC-NA5TR1.pdf Nanotron Technologies, 2009.
  • [40] A.Guillemin, N. Morel, An innovative lighting controller integrated in a selfadaptive building control system, Energy and Buildings, 33, (5), (2001),pp. 477–487.
Year 2018, Volume: 6 Issue: 3, 183 - 190, 31.07.2018
https://doi.org/10.17694/bajece.420722

Abstract

References

  • [1] M.Yumurtacı ve A.Keçebaş, “Akıllı Ev Teknolejileri ve Otomasyonu Sistemleri”, 5. (IATS’09), 13-15, Karabük, Türkiye, Mayıs 2009.
  • [2] Işık, Hakan, ve A. Alpaslan Altun, "Mikrodenetleyici Kullanılarak Cep Telefonu Kontrollü Akıllı Ev Uygulaması."
  • [3] U.Bekçibaşı ve M.Tenruh, “Telefon Şebekesi Üzerinden Şifre GüvenlikliAkıllı Ev Kontrol Sistemi”, 13.( Akademik Bilişim’11), 2-4, Malatya, Şubat, 2011.
  • [4] K.İnan ve M.Ali Akçayol, “GSM Tabanlı Akıllı Ev Uygulaması”, Bilişim Teknolojileri Dergisi, Cilt: 2, Sayı: 2, Mayıs 2009.
  • [5] B.Cincirop, “Gsm Kontrollü Akıllı Ev Otomasyonu”, Sakarya Üniversitesi Elektronik ve Bilgisayar Eğitimi Yüksek Lisans Tezi, 2009.
  • [6] T.Aydoğan, A.Çakır, M.A.Akça ve Y.E.Polat, “Telefonu İle Çağrı Otomasyonu”.
  • [7] C.Can, A.İpek, E.Azapoğlu ve R.O.Türker, “Lazer Güvenlik Sistemi ve Gsm Haberleşme”, MYO-OS 2010- Ulusal Meslek Yuksekokulları Oğrenci Sempozyumu.
  • [8] İ.Çayıroğlu ve S.Görgünoğlu, “Mobil Telefon ve Pic Mikrodenetleyici Kullanarak Uzaktan Esnek Kontrol Sağlanması”, Int.J.Eng.Research&Development,Vol.2,No.1, January 2010.
  • [9] O.Tosunoğlu ve M.Göktürk, “Akıllı Ev Sistemlerinde Ethernet Üzerinden Cihaz Kontrolü Ve İzlenmesi”, ELECO’2008, Elektrik-Elektronik-Bilgisayar Mühendisliği Sempozyumu ve Fuarı.
  • [10] F.Kahraman ve A.F.Boz, “Web Tabanlı Otomasyon Sistemi Tasarımı ve Yapımı”, 5. (IATS’09), 13-15, Karabük, Türkiye, Mayıs 2009.
  • [11] S.T.Bushby, BACnet: a standard communication infrastructure for intelligent buildings, Automation in Construction 6 (1997) 529–540.
  • [12] A.Kaklauskas, E.K. Zavadskas, Internetinė sprendimų parama (Web-based decision support), monograph, Technika, Vilnius, 2002, 216 pp. [in Lithuanian].
  • [13] İ.Yabanova, S.Taşkın, H.Ekiz ve H.Çimen, “Denetleyici Alan Ağı Üzerinden Mekatronik Bir Sistemin Kontrolü”, Makine Teknolojileri Elektronik Dergisi, Cilt: 7, No: 2, 2010.
  • [14] L.Birgül ve G.Cansever, “Mikrokontrollör ile Akıllı Ev Otomasyonu ve Bilgisayar Arayüzü”, ELECO’2008, Elektrik-Elektronik-Bilgisayar Mühendisliği Sempozyumu ve Fuarı.
  • [15] U.Bayram, “Akıllı Ev Otomasyonu”, Çanakkale Onsekiz Mart Üniversitesi Bilgisayar Bölümü Yüksek Lisans Tezi, 2006.
  • [16] G.Arslanoğlu, “Rf Ev Otomasyonu”, Gazi Üniversitesi Elektrik-Elektronik Mühendisliği Yüksek Lisans Tezi, 2009.
  • [17] H.Korkmaz, “Akıllı Ev Otomasyonunun Mikrodenetleyici ile Gerçekleştirilmesi”, Yıldız Teknik Üniversitesi Elektrik Mühendisliği Yüksek Lisans Tezi, 2007.
  • [18] F.Cem Uzun, “Akıllı Binalarda Otomasyon”, Makine Mühendisliği Yüksek Lisans Tezi, 2009.
  • [19] M.T.Gençoğlu, “Akıllı evler”, I.Mühendislik ve Teknoloji Sempozyumu (2008), pp.221-234.
  • [20] A.Kaklauskas, E. Zavadskas, R. Ditkevičius, An intelligent tutoring system for construction and real estate, Lecture Notes in Computer Science, 4101, (2006), pp1.74–181.
  • [21] J.-H. Park, H.-S. Park, S.-J. Lee, J. Choi, D.-G. Lee, Intelligent multimedia service system based on context awareness in smart home, Lecture Notes in Computer Science, 3681, (2005), pp.1146–1152.
  • [22] K.Schacht, New developments: smart materials (cutting edge, shape–memory properties, column), Appliance Manufacturer, 52, (1), (2004),pp. 14–16.
  • [23] T.Staedter, The smart antenna (Visualize, brief article), Technology Review Cambridge, 106, (1), (2003),pp. 81–82.
  • [24] J.Wong, H. Li, J. Lai, Evaluating the system intelligence of the intelligent building systems: Part 1: development of key intelligent indicators and conceptual analytical framework, Automation in Construction, 17, (3), (2008), pp. 284–302.
  • [25] H.W. Kua, S.E. Lee, Demonstration intelligent building—a methodology for the promotion of total sustainability in the built environment, Building and Environment, 37, (3), (2002),pp.231–240.
  • [26] J.K.W. Wong, H. Li, S.W. Wang, Intelligent building research: a review, Automation in Construction, 14, (1), (2005),pp.143–159.
  • [27] J.Neelamkavil, Automation in the prefab andmodular construction industry, 2009— 26th International Symposium on Automation and Robotics in Construction (ISARC 2009) Austin, Texas, USA, June 24–27, 2009, pp. 299–306.
  • [28] Z.Chen, D. Clements-Croome, J. Hong, H. Li, Q. Xu, A multicriteria lifespan energy efficiency approach to intelligent building assessment, Energy and Buildings, 38, (5),(2006),pp.393–409.
  • [29] H.Arkin, M. Paciuk, Evaluating intelligent building according to level of service system integration, Automation in Construction, 6, (1997),pp.471–479.
  • [30] J.Naimavičienė, Intelligent knowledge and device based assisted residential environment: doctoral dissertation: technological sciences, civil engineering (02T), Vilnius Gediminas Technical University, Technika, Vilnius, (2008), pp.134
  • [31] H.Şahin ve O.Hazer, “Akıllı Konut Teknolojileri”, Gazi Üniversitesi Endüstriyel Sanatlar Eğitim Fakültesi Dergisi, Sayı:269, Mayıs 2010.
  • [32] G.Wood, M. Newborough, Energy-use information transfer for intelligent homes: enabling energy conservation with central and local displays, Energy and Buildings, 39, (2007),pp.495–503.
  • [33] A.M.Omer, Renewable building energy systems and passive human comfort solutions. Renewable and sustainable, Energy Reviews, 12, (6),(2008),pp.1562–1587.
  • [34] D.W.Seward, S.D. Quayle, System architectures and safety for mobile construction robots, 13th Int. Symp. on Robotics in Construction, Tokyo, Japan, June 1996, pp. 727–732.
  • [35] C.Soungho, K. Naruo, Application of location information by stereo camera images to project progress monitoring, ISARC 2007, September 2007, 24th International Symposium on Automation and Robotics in Construction, Indian Institute of Technology Madras, Kochi, India, September 2007, pp. 89–92.
  • [36] G.J.Ríos-Moreno, M. Trejo-Perea, R. Castañeda-Miranda, V.M. Hernández-Guzmán, G. Herrera-Ruiz, Modelling temperature in intelligent buildings by means of autoregressive models, Automation in Construction, 16, (5), (2007),pp.713–722.
  • [37] C.E. Ochoa, I.G. Capeluto, Strategic decision-making for intelligent buildings: comparative impact of passive design strategies and active features in a hot climate, Building and Environment, 43, (11), (2008), pp.1829–1839.
  • [38] O.Woodman, R. Harle, RF-based initialisation for inertial pedestrian tracking, in: H. Tokuda, et al., (Eds.), Pervasive Computing, 7th International Conference, Pervasive 2009, Nara, Japan, May 11–14, 2009, Proceedings. Lecture Notes in Computer Science, 5538, Springer, 2009, pp.238–255.
  • [39] NanoLOC TRX - High Performance RF Transceiver with Location Awareness and Robust Wireless Communication, Fact Sheet. In http://www.nanotron.com/EN/pdf/Factsheet_nanoLOC-NA5TR1.pdf Nanotron Technologies, 2009.
  • [40] A.Guillemin, N. Morel, An innovative lighting controller integrated in a selfadaptive building control system, Energy and Buildings, 33, (5), (2001),pp. 477–487.
There are 40 citations in total.

Details

Primary Language English
Subjects Engineering
Journal Section Araştırma Articlessi
Authors

Ahmet Şenpınar

Publication Date July 31, 2018
Published in Issue Year 2018 Volume: 6 Issue: 3

Cite

APA Şenpınar, A. (2018). PV Array Based Smart Home Automation System. Balkan Journal of Electrical and Computer Engineering, 6(3), 183-190. https://doi.org/10.17694/bajece.420722

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