Integrated resource planning in sustainable energy-based distributed microgrids
暂无分享,去创建一个
[1] André Pina,et al. Comparison of different demand response optimization goals on an isolated microgrid , 2018, Sustainable Energy Technologies and Assessments.
[2] Yu-Qing BAO,et al. Demand response for frequency control of multi-area power system , 2017 .
[3] Yang Li,et al. Design of a hybrid hierarchical demand response control scheme for the frequency control , 2015 .
[4] Amar Kumar Barik,et al. Expeditious frequency control of solar photovoltaic/biogas/biodiesel generator based isolated renewable microgrid using grasshopper optimisation algorithm , 2018, IET Renewable Power Generation.
[5] Yu Wang,et al. A Survey of Energy Management in Interconnected Multi-Microgrids , 2019, IEEE Access.
[6] Ahmad M. Abubaker,et al. An integrated photovoltaic/wind/biomass and hybrid energy storage systems towards 100% renewable energy microgrids in university campuses , 2021 .
[7] Amar Kumar Barik,et al. Proficient load‐frequency regulation of demand response supported bio‐renewable cogeneration based hybrid microgrids with quasi‐oppositional selfish‐herd optimisation , 2019, IET Generation, Transmission & Distribution.
[8] Yushi Miura,et al. Oscillation Damping of a Distributed Generator Using a Virtual Synchronous Generator , 2014, IEEE Transactions on Power Delivery.
[9] Suryanarayana Doolla,et al. Measurement-Based Estimation of Inertia in AC Microgrids , 2020, IEEE Transactions on Sustainable Energy.
[10] Jagdeep Singh Lather,et al. Power management and control of a grid-independent DC microgrid with hybrid energy storage system , 2021 .
[11] Amar Kumar Barik,et al. A storage based Virtual Synchronous System for Load-frequency regulation of interconnected Hybrid Microgrids using Selfish-herd optimiser , 2020, 2020 International Conference on Renewable Energy Integration into Smart Grids: A Multidisciplinary Approach to Technology Modelling and Simulation (ICREISG).
[12] Wenlong Jing,et al. Dynamic power allocation of battery-supercapacitor hybrid energy storage for standalone PV microgrid applications , 2017 .
[13] Li Wang,et al. Small-Signal Stability Analysis of an Autonomous Hybrid Renewable Energy Power Generation/Energy Storage System Part I: Time-Domain Simulations , 2008, IEEE Transactions on Energy Conversion.
[14] Amar Kumar Barik,et al. Demand Response Supported Optimal Load-Frequency Regulation of Sustainable Energy based Four-Interconnected Unequal Hybrid Microgrids , 2019, 2019 IEEE International Conference on Sustainable Energy Technologies (ICSET).
[15] Amar Kumar Barik,et al. Active power management of isolated renewable microgrid generating power from Rooftop solar arrays, sewage waters and solid urban wastes of a smart city using Salp swarm algorithm , 2018, 2018 Technologies for Smart-City Energy Security and Power (ICSESP).
[16] Robertas Damaševičius,et al. Hybrid microgrid for microfinance institutions in rural areas – A field demonstration in West Africa , 2019, Sustainable Energy Technologies and Assessments.
[17] Attia A. El-Fergany,et al. Design of robust model predictive controllers for frequency and voltage loops of interconnected power systems including wind farm and energy storage system , 2018, IET Generation, Transmission & Distribution.
[18] Amar Kumar Barik,et al. Recent trends and development in hybrid microgrid: a review on energy resource planning and control , 2021, International Journal of Sustainable Energy.
[19] Amar Kumar Barik,et al. Coordinated regulation of voltage and load frequency in demand response supported biorenewable cogeneration‐based isolated hybrid microgrid with quasi‐oppositional selfish herd optimisation , 2019, International Transactions on Electrical Energy Systems.
[20] Toshifumi Ise,et al. Virtual synchronous generators: A survey and new perspectives , 2014 .
[21] Yasunori Mitani,et al. Robust Virtual Inertia Control of a Low Inertia Microgrid Considering Frequency Measurement Effects , 2019, IEEE Access.
[22] Shahram Jadid,et al. A new approach for real time voltage control using demand response in an automated distribution system , 2014 .
[23] Ikbal Ali,et al. Demand-Side Management: Energy Efficiency and Demand Response , 2018 .
[24] Pratik Harsh,et al. Energy management in microgrid using incentive-based demand response and reconfigured network considering uncertainties in renewable energy sources , 2021 .
[25] Zhijian Hu,et al. Adjustable virtual inertia control of supercapacitors in PV-based AC microgrid cluster , 2019, Electric Power Systems Research.
[26] S. Ali Pourmousavi,et al. Real-Time Central Demand Response for Primary Frequency Regulation in Microgrids , 2012, IEEE Transactions on Smart Grid.
[27] Yasunori Mitani,et al. Applying Virtual Inertia Control Topology to SMES System for Frequency Stability Improvement of Low-Inertia Microgrids Driven by High Renewables , 2019, Energies.
[28] Erik Valdemar Cuevas Jiménez,et al. A global optimization algorithm inspired in the behavior of selfish herds , 2017, Biosyst..
[29] Amar Kumar Barik,et al. Illustration of demand response supported co‐ordinated system performance evaluation of YSGA optimized dual stage PIFOD‐(1 + PI) controller employed with wind‐tidal‐biodiesel based independent two‐area interconnected microgrid system , 2020, IET Renewable Power Generation.
[30] Hassan Bevrani,et al. Robust Frequency Control of Microgrids Using an Extended Virtual Synchronous Generator , 2018, IEEE Transactions on Power Systems.
[31] Mohammad Abedini,et al. Multi-microgrid energy management through tertiary-level control: Structure and case study , 2021 .
[32] V. Mukherjee,et al. A novel quasi-oppositional chaotic antlion optimizer for global optimization , 2017, Applied Intelligence.
[33] Debapriya Das,et al. An integrated optimal operating strategy for a grid-connected AC microgrid under load and renewable generation uncertainty considering demand response , 2021 .
[34] Joao P. S. Catalao,et al. Demand Response and Flexible Management to Improve Microgrids Energy Efficiency with a High Share of Renewable Resources , 2020, Sustainable Energy Technologies and Assessments.
[35] Mohamad Esmail Hamedani Golshan,et al. Determining optimal virtual inertia and frequency control parameters to preserve the frequency stability in islanded microgrids with high penetration of renewables , 2018 .