Title :
Fine-time-granularity fast demand control of building HVAC facilities for future smart grid
Author :
Ninagawa, C. ; Kondo, Satoshi ; Isozumi, S. ; Yoshida, Hiroyuki
Author_Institution :
Dept. of Electr. & Electron. Eng., Gifu Univ., Gifu, Japan
Abstract :
Real-time demand control is expected for the future smart grid with intensive renewable energy sources (RESs). The Variable Refrigerant Flow (VRF) building HVAC (Heating Ventilation and Air-Conditioning) facilities are popular in modern buildings in Japan, Europe, and other countries. The VRF HVAC type uses sophisticated refrigerant flow control devices. We propose a fine-time-granularity fast demand control scheme that replaces traditional coarse and slow demand controls, such as on/off adjustment of power consumption. However, the power consumption forecast of the VRF´s devices for the entire building is extremely complicated. Therefore, we chose statistical forecast model approach. A 5-minute-interval Auto-Regressive (AR) model system identification was introduced. We conducted a trial simulation of fine-time-granularity fast demand control using our 5-minute-interval AR model as a preliminary evaluation for actual experiments.
Keywords :
HVAC; building management systems; flow control; power consumption; real-time systems; regression analysis; smart power grids; 5-minute-interval AR model; 5-minute-interval-autoregressive model system identification; AR model system identification; RES; VRF building HVAC facility; VRF devices; building heating ventilation and air-conditioning) facility; fine-time-granularity fast demand control scheme; power consumption; real-time demand control; refrigerant flow control devices; renewable energy sources; smart grid; variable refrigerant flow; Buildings; Europe; Heating; Power demand; Predictive models; Refrigerants; Smart grids; AR model; HVAC; building; demand control; smart grid;
Conference_Titel :
Innovative Smart Grid Technologies (ISGT Europe), 2012 3rd IEEE PES International Conference and Exhibition on
Conference_Location :
Berlin
Print_ISBN :
978-1-4673-2595-0
Electronic_ISBN :
2165-4816
DOI :
10.1109/ISGTEurope.2012.6465682