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Title: :  MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL
PaperId: :  1977
Published in:   International Journal Of Advance Research And Innovative Ideas In Education
Publisher:   IJARIIE
e-ISSN:   2395-4396
Volume/Issue:    Volume 2 Issue 2 2016
DUI:    16.0415/IJARIIE-1977
Licence: :   IJARIIE is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.

Author NameAuthor Institute
NILESH SUKHDEV SAHANEAMRUTVAHINI COLLEGE OF ENGINEERING,SANGAMNER
RAMESH MADHUKAR PHATANGAREAMRUTVAHINI COLLEGE OF ENGINEERING,SANGAMNER
SHUBHAM SURESH JADHAVAMRUTVAHINI COLLEGE OF ENGINEERING,SANGAMNER
KETAN POPAT KADLAGAMRUTVAHINI COLLEGE OF ENGINEERING,SANGAMNER
PROF. VIJAY KUMARAMRUTVAHINI COLLEGE OF ENGINEERING,SANGAMNER
Rahul nivrutti sangleAMRUTVAHINI COLLEGE OF ENGINEERING,SANGAMNER
sudhir vishnu shingadeAmrutvahini College of Engineering,Sangamner

Abstract

ELECTRICAL ENGINEERING
MDI, Power factor, Penalty, Load management
Power is measured in instantaneous quantities, while energy is the integral of power over time. For example, a 100 W light bulb absorbs 100 W of power. If operated for one hour, that light bulb absorbs 100 W – hours of energy. Maximum demand is the maximum instantaneous power consumed over a specified window of time. In the case of that 100 W bulb, as it is switched on and off, the instantaneous demand goes from zero to 100 W to zero, etc. Not very interesting. But if that bulb is operated in parallel with a second 100 W light bulb that is left on all the time, the demand will switch instantaneously between 100 W and 200 W, and the maximum demand of the combination will be 200 W. Now, the way this is applied is that electric distribution utilities often include demand as one of the factors used to determine the bill the consumer receives. In addition to measuring integrated energy consumption over the billing period (typically a month), they also measure demand. Rather than measure truly instantaneous values, they actually measure energy over a short window of time, and then divide the energy consumed during that interval by the length of the interval to arrive at an effective peak value for the interval.

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IJARIIE NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, and sudhir vishnu shingade. "MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL" International Journal Of Advance Research And Innovative Ideas In Education Volume 2 Issue 2 2016 Page 1689-1696
MLA NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, and sudhir vishnu shingade. "MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL." International Journal Of Advance Research And Innovative Ideas In Education 2.2(2016) : 1689-1696.
APA NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, & sudhir vishnu shingade. (2016). MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL. International Journal Of Advance Research And Innovative Ideas In Education, 2(2), 1689-1696.
Chicago NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, and sudhir vishnu shingade. "MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL." International Journal Of Advance Research And Innovative Ideas In Education 2, no. 2 (2016) : 1689-1696.
Oxford NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, and sudhir vishnu shingade. 'MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL', International Journal Of Advance Research And Innovative Ideas In Education, vol. 2, no. 2, 2016, p. 1689-1696. Available from IJARIIE, https://ijariie.com/AdminUploadPdf/MICROCONTROLLER_BASED_MAXIMUM_DEMAND_CONTROL_ijariie1977.pdf (Accessed : 13 January 2017).
Harvard NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, and sudhir vishnu shingade. (2016) 'MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL', International Journal Of Advance Research And Innovative Ideas In Education, 2(2), pp. 1689-1696IJARIIE [Online]. Available at: https://ijariie.com/AdminUploadPdf/MICROCONTROLLER_BASED_MAXIMUM_DEMAND_CONTROL_ijariie1977.pdf (Accessed : 13 January 2017)
IEEE NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, and sudhir vishnu shingade, "MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL," International Journal Of Advance Research And Innovative Ideas In Education, vol. 2, no. 2, pp. 1689-1696, Mar-App 2016. [Online]. Available: https://ijariie.com/AdminUploadPdf/MICROCONTROLLER_BASED_MAXIMUM_DEMAND_CONTROL_ijariie1977.pdf [Accessed : 13 January 2017].
Turabian NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, and sudhir vishnu shingade. "MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL." International Journal Of Advance Research And Innovative Ideas In Education [Online]. volume 2 number 2 (13 January 2017).
Vancouver NILESH SUKHDEV SAHANE, RAMESH MADHUKAR PHATANGARE, SHUBHAM SURESH JADHAV, KETAN POPAT KADLAG, PROF. VIJAY KUMAR, Rahul nivrutti sangle, and sudhir vishnu shingade. MICROCONTROLLER BASED MAXIMUM DEMAND CONTROL. International Journal Of Advance Research And Innovative Ideas In Education [Internet]. 2016 [Cited : 13 January 2017]; 2(2) : 1689-1696. Available from: https://ijariie.com/AdminUploadPdf/MICROCONTROLLER_BASED_MAXIMUM_DEMAND_CONTROL_ijariie1977.pdf
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