A platform for research: civil engineering, architecture and urbanism
Frequency Stability Analysis of Multi-Renewable Source System with Cascaded PDN-FOPI Controller
The present work describes a multi-area (two and three) renewable-energy-source-integrated thermal-hydro-wind power generation structure along with fleets of plug-in electrical vehicles (PEVs) in each control area. The generation–load balance is the prime objective, so automatic generation control (AGC) is adopted in the system. In the paper, a cascaded combination of proportional derivative with filter PDN and fractional-order proportional integral (FOPI) is proposed and tuned using the hybrid chemical reaction optimization with pattern search (hCRO-PS) algorithm. The hCRO-PS algorithm is designed successfully, and its effectiveness is checked through its application to various benchmark functions. Further, Eigen value analysis is carried out for the test system to verify the system stability. The impacts of diverse step load perturbation (i.e., case I, II, III, and IV) and time-varying load perturbation are also included in the study. Moreover, the impact of renewable sources, PEVs in different areas, and varied state of charge (SOC) levels on the system dynamics are reflected in the work. From the analysis, it can be inferred that the proposed controller provides comparable results with other fractional-order and conventional controllers under varying loading conditions.
Frequency Stability Analysis of Multi-Renewable Source System with Cascaded PDN-FOPI Controller
The present work describes a multi-area (two and three) renewable-energy-source-integrated thermal-hydro-wind power generation structure along with fleets of plug-in electrical vehicles (PEVs) in each control area. The generation–load balance is the prime objective, so automatic generation control (AGC) is adopted in the system. In the paper, a cascaded combination of proportional derivative with filter PDN and fractional-order proportional integral (FOPI) is proposed and tuned using the hybrid chemical reaction optimization with pattern search (hCRO-PS) algorithm. The hCRO-PS algorithm is designed successfully, and its effectiveness is checked through its application to various benchmark functions. Further, Eigen value analysis is carried out for the test system to verify the system stability. The impacts of diverse step load perturbation (i.e., case I, II, III, and IV) and time-varying load perturbation are also included in the study. Moreover, the impact of renewable sources, PEVs in different areas, and varied state of charge (SOC) levels on the system dynamics are reflected in the work. From the analysis, it can be inferred that the proposed controller provides comparable results with other fractional-order and conventional controllers under varying loading conditions.
Frequency Stability Analysis of Multi-Renewable Source System with Cascaded PDN-FOPI Controller
Aurobindo Behera (author) / Subhranshu Sekhar Pati (author) / Umamani Subudhi (author) / Subhankar Ghatak (author) / Tapas Kumar Panigrahi (author) / Mohammed H. Alsharif (author) / Syed Mohsan (author)
2022
Article (Journal)
Electronic Resource
Unknown
automatic generation control , cascaded controller , hybrid chemical reaction optimization and pattern search algorithm , plug-in electric vehicle , renewable sources , Environmental effects of industries and plants , TD194-195 , Renewable energy sources , TJ807-830 , Environmental sciences , GE1-350
Metadata by DOAJ is licensed under CC BY-SA 1.0
A Hybrid Bacterial Foraging - PSO Algorithm Based Tuning of Optimal FOPI Speed Controller
DOAJ | 2011
|Accounting for fuel in fire danger forecasts: the fire occurrence probability index (FOPI)
DOAJ | 2023
|Multi-curvature overhanging hyperboloid cascaded curtain wall system
European Patent Office | 2021
|