TY - GEN
T1 - Development of Supervisory Control System for Thermal Energy Distribution System
AU - Lin, Linyu
N1 - Publisher Copyright:
© 2024 Pacific Basin Nuclear Conference, PBNC 2024. All rights reserved.
PY - 2024
Y1 - 2024
N2 - The integrated energy system (IES) refers to the combination of nuclear energy generation with other energy sources to enable the efficiency and reliability of power generations. To create technologically viable and economically competitive systems, supervisory control strategies are critical for optimizing performance and ensuring stability across different energy generation, transportation, and utilization. This work focuses on the control strategies for the thermal energy distribution system (TEDS), which is a cornerstone of the Dynamic Energy Transport and Integration Laboratory at Idaho National Laboratory. TEDS currently relies on operators to coordinate across different components to manage energy storage and ensure efficiency. This work demonstrates the use of model predictive control (MPC) with surrogate models in determining optimal setpoints for major TEDS components. The capability of MPC-based supervisory control system is evaluated by autonomously matching the power outputs from a Dymola-based TEDS with target heat demands.
AB - The integrated energy system (IES) refers to the combination of nuclear energy generation with other energy sources to enable the efficiency and reliability of power generations. To create technologically viable and economically competitive systems, supervisory control strategies are critical for optimizing performance and ensuring stability across different energy generation, transportation, and utilization. This work focuses on the control strategies for the thermal energy distribution system (TEDS), which is a cornerstone of the Dynamic Energy Transport and Integration Laboratory at Idaho National Laboratory. TEDS currently relies on operators to coordinate across different components to manage energy storage and ensure efficiency. This work demonstrates the use of model predictive control (MPC) with surrogate models in determining optimal setpoints for major TEDS components. The capability of MPC-based supervisory control system is evaluated by autonomously matching the power outputs from a Dymola-based TEDS with target heat demands.
KW - Integrated Energy System
KW - Supervisory Control
KW - Thermal Energy Distribution System
UR - https://www.scopus.com/pages/publications/85211607420
U2 - 10.13182/PBNC24-45172
DO - 10.13182/PBNC24-45172
M3 - Conference contribution
AN - SCOPUS:85211607420
T3 - Pacific Basin Nuclear Conference, PBNC 2024
SP - 435
EP - 444
BT - Pacific Basin Nuclear Conference, PBNC 2024
PB - American Nuclear Society
T2 - 2024 Pacific Basin Nuclear Conference, PBNC 2024
Y2 - 7 October 2024 through 10 October 2024
ER -