CHARACTERIZING ELECTRIC GRID SYSTEM BENEFITS OF MPC-BASED RESIDENTIAL LOAD SHAPING

被引:0
|
作者
Cruickshank, Robert F. [1 ]
Florita, Anthony R. [2 ]
Henze, Gregor P. [1 ,2 ]
Corbin, Charles D.
机构
[1] Univ Colorado, Dept Civil Environm & Architectural Engn, Boulder, CO 80309 USA
[2] Natl Renewable Energy Lab, Power Syst Engn Ctr, Golden, CO USA
关键词
PREDICTIVE CONTROL; ENERGY;
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Routinely encouraging and discouraging residential electric load throughout the day will be increasingly critical in efficiently managing the smart grid to reliably deliver clean, low-cost electricity. Yet, manipulating the duty cycles of thermostatically controlled loads such as heating, air conditioning, and hot water heaters can have the effect of destabilizing or stabilizing the grid. This work explores the potential for price-responsive control of residential air conditioning to shape electric demand at the distribution feeder level to minimize electricity production costs. Physical models of the interplay between building thermal and electric loads are used to simulate time-series temperature and load behaviour. Instantaneous load-adding and load-shedding opportunities are quantified in more than 100,000 individual homes on 204 distribution feeders with results presented for 35 cities across the United States. In the context of distributed model predictive control, simulation of feeder-level response to a residential day-ahead 5-minute pricing vector to 2,146 homes highlights an aggregate impact of flexible loads.
引用
收藏
页码:791 / 798
页数:8
相关论文
共 50 条
  • [41] An ADMM Algorithm for MPC-based Energy Management in Hybrid Electric Vehicles with Nonlinear Losses
    East, Sebastian
    Cannon, Mark
    [J]. 2018 IEEE CONFERENCE ON DECISION AND CONTROL (CDC), 2018, : 2641 - 2646
  • [42] Robust prediction and MPC-based optimal energy management for HVAC System
    Suda, Takatoshi
    Namerikawa, Toru
    [J]. IFAC PAPERSONLINE, 2018, 51 (25): : 472 - 477
  • [43] Research on MPC-based Suspension Control of Wind Maglev Yaw System
    Wang, Nannan
    Cai, Bin
    Chu, Xiaoguang
    [J]. 2018 IEEE 8TH ANNUAL INTERNATIONAL CONFERENCE ON CYBER TECHNOLOGY IN AUTOMATION, CONTROL, AND INTELLIGENT SYSTEMS (IEEE-CYBER), 2018, : 1053 - 1056
  • [44] MPC-based interval number optimization for electric water heater scheduling in uncertain environments
    Jidong WANG
    Chenghao LI
    Peng LI
    Yanbo CHE
    Yue ZHOU
    Yinqi LI
    [J]. Frontiers in Energy., 2021, (01) - 200
  • [45] MPC-based interval number optimization for electric water heater scheduling in uncertain environments
    Jidong Wang
    Chenghao Li
    Peng Li
    Yanbo Che
    Yue Zhou
    Yinqi Li
    [J]. Frontiers in Energy, 2021, 15 : 186 - 200
  • [46] MPC-based Battery Thermal Management Controller for Plug-in Hybrid Electric Vehicles
    Masoudi, Yasaman
    Azad, Nasser L.
    [J]. 2017 AMERICAN CONTROL CONFERENCE (ACC), 2017, : 4365 - 4370
  • [47] MPC-Based Obstacle Avoidance Path Tracking Control for Distributed Drive Electric Vehicles
    Wu, Hongchao
    Zhang, Huanhuan
    Feng, Yixuan
    [J]. WORLD ELECTRIC VEHICLE JOURNAL, 2022, 13 (12):
  • [48] MPC-based Cooperative Braking Control for rear-wheel-drive Electric Vehicle
    Dou, Jinglei
    Cui, Gaojian
    Li, Shaosong
    Zhao, Xilu
    Lu, Xiaohui
    Yu, Zhixin
    [J]. 2017 CHINESE AUTOMATION CONGRESS (CAC), 2017, : 4419 - 4424
  • [49] Demand Response as a Load Shaping Tool in an Intelligent Grid With Electric Vehicles
    Shao, Shengnan
    Pipattanasomporn, Manisa
    Rahman, Saifur
    [J]. IEEE TRANSACTIONS ON SMART GRID, 2011, 2 (04) : 624 - 631
  • [50] Impact of Electric Vehicles integration on residential demand response system to peak load minimizing in smart grid
    Khemakiem, Siwar
    Rekik, Mouna
    Krichen, Lotfi
    [J]. 2019 19TH INTERNATIONAL CONFERENCE ON SCIENCES AND TECHNIQUES OF AUTOMATIC CONTROL AND COMPUTER ENGINEERING (STA), 2019, : 572 - 577