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A computer system for controlling temperature in a two-state mode and by means of a PI controller in an “intelligent building”

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Warianty tytułu
Konferencja
Computer Applications in Electrical Engineering 2012 (23-24.04.2012; Poznań, Polska)
Języki publikacji
EN
Abstrakty
EN
The article presents the application capabilities of the LOGO! controller produced by the Siemens company with respect to heating control in an automated “intelligent building”. The wide range of capabilities of the logic controller finds its reflection in practical implementation, as illustrated by means of a computer simulation example prepared in the LOGO! Soft Comfort v6.0 program. The work presents a comparative analysis of two programs serving two-stage heating control: with and without hysteresis, as well as a control program for an “intelligent” holiday cottage. The article also presents the results of parameter calculations for the B007 analog adapter, based on the examples of sample heating curve characteristics. The wide range of capabilities of the logic controller finds its practical implementation on the basis of examples of PI controller operation simulations in the LOGO! Soft Comfort v6.0 program.
Rocznik
Tom
Strony
372--385
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
  • Poznań University of Technology 60-965 Poznań, ul. Piotrowo 3a
Bibliografia
  • [1] Benysek G., Improvement in the quality of delivery of electrical energy using power electronics systems, Springer-Verlag, London, 2007.
  • [2] Gellings C., Smart power delivery: a vision for the future, EPRI Journal, June, 2003.
  • [3] GridWise Alliance, Rethinking energy from generation to consumption, Brochure, 2003.
  • [4] Grochowski M., Komputerowe systemy sterowania. Sterowanie dwustanowe oraz przy pomocy regulatorów PID, Lecture materials, Gdańsk University of Technology, 2012, p. 11.
  • [5] Jarmuda T., Zdecentralizowane systemy automatyzacji w energooszczędnym „budynku inteligentnym”, science and technology journal „Napędy i Sterowanie”, No 12 (152), ISSN 1507-7764, Wydawnictwo „Druk-Art” S.C., Sosnowiec, December 2011, pp. 87-89.
  • [6] Kannberg L. GridWise - transforming the energy system, Pacific Northwest National Laboratory, Conference Presentation, 2003.
  • [7] Kwaśniewski J., Inteligentny dom i inne systemy sterowania w 100 przykładach, Wydawnictwo BTC, Legionowo, 2011, pp. 101-103, 144-147.
  • [8] LOGO! Soft Comfort 6.1 software help (Polish language version).
  • [9] Massoud S., Wollenberg B., Toward a smart grid - power delivery for the 21st century, IEEE Power and Energy Magazine, vol.3, 2005, pp. 34-41.
  • [10] Mazza P. The smart energy network - electricity’s third great revolution, http://www.climatesolutions.org, 19.11.2011, 22:00, 2003.
  • [11] Niezabitowska E., Sowa J., Staniszewski Z., Winnicka - Jasłowska D., Boroń W., Niezabitowski A., Budynek Inteligentny, [in] Niezabitowska E. (ed.) Potrzeby użytkownika a standard budynku inteligentnego, Vol. I, Wydawnictwo Politechniki Śląskiej, Gliwice, 2010, pp. 319-324.
  • [12] Strzelecki R., Benysek G., Conceptions and properties of the arrangements in distributed electrical power systems, MITEL Conference, 2004, pp. 241-248.
  • [13] Strzelecki R., Benysek G., Power Electronics In Smart Electrical Energy Networks, Springer, London, 2008, p.8.
  • [14] Strzelecki R., Jarnut M., Benysek G., Active electrical energy conditioners for individual customers, PES Conference, Warsaw University of Technology Press, vol. 1, 2003, pp. 27-34.
  • [15] Thomsen P., Application and control of CUPS in the distribution grid, Institute of Energy Technology, Aalborg University, vol.3, 1999, pp. 2-11.
  • [16] http://elektroinzynieria.pl/newsItem, on 09.01.2012 at 14:00.
  • [17] http://www.intelidom.pl , on 21.08.2012 at 20:00.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-7ad15ced-5f96-47cd-8f74-99f40946d8a9
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