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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | Developing new participation model of thermal generating units in flexible ramping market | Khoshjahan, M. | Institution of Engineering and Technology, | 2019 |
Power generation economics.
Commerce. Power markets. Thermoelectric power plants. Bus test systems. Developed model. Power generation dispatch. Real-time market. Thermal generating units. Thermal power stations. Uncertainty and variability. Electric load dispatching. |
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| 2 | مقاله | Effects of flexible ramping product on improving power system real-time operation | Khoshjahan, M. | 2017 |
Power system market.
Real-time dispatch (RTD) Wind energy. Commerce. Decision making. Linear programming. Optimization. Wind power. Decision makers. Flexibility. Flexible ramping. Improving power. Integration of renewable energies. Optimization problems. Ramp capability. Real time dispatches. Costs. |
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| 3 | مقاله | Harnessing ramp capability of spinning reserve services for enhanced power grid flexibility | Khoshjahan, M. | Institute of Electrical and Electronics Engineers Inc, | 2019 |
Electricity market.
Power markets. Renewable energy resources. Wind. Flexibility. Flexible ramping product (FRP) Optimization framework. Payment mechanism. Ramp capability. Spinning reserve service. Spinning reserves. System reliability. Electric power transmission networks. |
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| 4 | مقاله | Enhancing electricity market flexibility by deploying ancillary services for flexible ramping product procurement | Khoshjahan, M. | Elsevier Ltd, | 2021 |
Power markets.
Stochastic systems. Wind power. Ancillary service. Independent system operators. Optimal deployment. Optimization algorithms. Spinning reserves. Stochastic demand. Thermal generating units. Uncertainty and variability. Electric industry. |
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| 5 | مقاله | A linearized transmission expansion planning model under N − 1 criterion for enhancing grid-scale system flexibility via compressed air energy storage integration | Mazaheri, H. | John Wiley and Sons Inc, | 2021 |
Compressed air.
Electric power transmission networks. Expansion. Integer programming. Investments. Pressure vessels. Renewable energy resources. Transmissions. Compressed air energy storages (CAES) Energy storage systems. Inherent flexibility. Mixed integer linear programming model. Quantitative metric. Reliability criterion. Renewable energy source. Transmission expansion planning. Compressed air energy storage. |
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| 6 | مقاله | A linearized transmission expansion planning model under N − 1 criterion for enhancing grid-scale system flexibility via compressed air energy storage integration | Mazaheri, H. | John Wiley and Sons Inc, | 2022 |
Compressed air.
Electric power transmission networks. Expansion. Integer programming. Investments. Pressure vessels. Renewable energy resources. Transmissions. Compressed air energy storages (CAES) Energy storage systems. Inherent flexibility. Mixed integer linear programming model. Quantitative metric. Reliability criterion. Renewable energy source. Transmission expansion planning. Compressed air energy storage. |
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| 7 | مقاله | Advanced bidding strategy for participation of energy storage systems in joint energy and flexible ramping product market | Khoshjahan, M. | Institution of Engineering and Technology, | 2020 |
Electric energy storage.
Optimization. Profitability. Stochastic systems. Bidding strategy. Energy Storage Systems (ESSs) Market participants. Optimal bidding strategy. Power system operators. Real-time market. Stochastic optimisation. Commerce. |
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| 8 | مقاله | Robust optimization of renewable-based multi-energy micro-grid integrated with flexible energy conversion and storage devices | Lekvan, A. A. | Elsevier Ltd, | 2021 |
Decision making.
Electric energy storage. Energy conversion. Microgrids. Optimization. Scheduling. Stochastic systems. Vehicle-to-grid. Virtual storage. Wind power. Combined heat and power units. Decision making procedure. Demand response programs. Electric Vehicles (EVs) Emerging technologies. Energy conversion and storages. Integrated scheduling. Vehicle to Grid (V2G) Stochastic models. |
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| 9 | پایان نامه | طراحی چارچوب بهینه مشارکت واحدهای ذخیره ساز در بازار شیب منعطف با هدف بهبود قابلیت اطمینان سیستم Developing the Appropriate Framework of Energy Storage Systems’ Participation in Flexible Ramping Market Considering the Improvement of System Reliability | خوش جهان، محمد Khoshjahan, Mohammad | صنعتی شریف | 1396 | منابع تجدیدپذیر انرژی Renewable Energy Resources / عدم قطعیت Uncertainty / ذخیره انرژی Energy Storage / ادوات ذخیره کننده انرژی Energy Storage Device (ESD) / محصول شیب منعطف Flexible Ramping Product (FRP) / بازار بلادرنگ Real-Time Market / ظرفیت پذیری رمپ Ramp Capabilty |
05-50115
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| 10 | مقاله | Probability of missed detection as a criterion for receiver placement in MIMO PCL | Majd, M. N. | IEEE, | 2012 |
Missed detections.
Multiple antenna. Multiple receivers. Passive radars. Radar performance. Receive antenna. Receiving antennas. MIMO radar. |
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| 11 | مقاله | An efficient method for the ring opening of epoxides with aromatic amines by Sb(III) chloride under microwave irradiation | Ghazanfari, D. | 2008 |
Epoxides.
β-amino alcohols. Aromatic amines. SbCl3. |
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| 12 | مقاله | Resource allocation for uav-enabled integrated sensing and communication (isac) via multi-objective optimization | Rezaei, O. | Institute of Electrical and Electronics Engineers Inc, | 2023 |
Integrated sensing and communication (ISAC)
Unmanned aerial vehicle (UAV) Waveform design. Wireless power transfer (WPT) |
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| 13 | مقاله | MIMO radar signal design to improve the MIMO ambiguity function via maximizing its peak | Chitgarha, M. M. | Elsevier, | 2016 |
Ambiguity function.
Multiple-Input Multiple-Output radar. Power allocation. Waterfilling. Waveform design. Codes (symbols) Design. Feedback control. MIMO systems. Radar. Radar signal processing. Radar systems. Telecommunication repeaters. Multiple input multiple output (MIMO) radars. Power allocations. MIMO radar. |
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| 14 | مقاله | Detection-localization tradeoff in MIMO radars | Nazari Majd, M. | 2017 |
Detection.
Localization. MIMO radar. Tradeoff. Widely separated antennas. |
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| 15 | مقاله | Antenna placement and power allocation optimization in MIMO detection | Radmard, M. | 2014 |
Antennas.
Transmitters. Antenna placement. Detection performance. MIMO detection. Multiple antenna. Neyman Pearson detectors. Power allocations. Total power. MIMO systems. |
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| 16 | مقاله | Ambiguity function of MIMO radar with widely separated antennas | Radmard, M. | 2014 |
Ambiguity function.
Widely separated antennas. Antennas. MIMO systems. Radar antennas. Separation. Multiple antenna. Multiple input multiple output techniques. System's performance. MIMO radar. |
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| 17 | مقاله | Choosing the position of the receiver in a MISO passive radar system | Chitgarha, M. M. | 2012 |
MIMO.
Passive Coherent Location. Receiver positioning. MIMO Multiple Input Multiple Output. MISO. Multiple antenna. Multiple receive antennas. Neyman Pearson detectors. Passive coherent locations. Passive radars. Probability of missed detections. Receive antenna. Spatial diversity. Local area networks. MIMO systems. Receiving antennas. MIMO radar. |
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| 18 | مقاله | Adaptive filtering techniques in passive radar | Chitgarha, M. M. | 2013 |
Direct signal.
Filtering technique. Limited dynamic ranges. Passive radars. Adaptive filters. Radar. |
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| 19 | مقاله | Ambiguity function based receiver placement in multi-site radar | Radmard, M. | 2017 |
Genetic algorithm.
Multi-site radar. Receiver placement. Antennas. Genetic algorithms. Radar antennas. Radar systems. Receiving antennas. Ambiguity function. Aspect angles. Multi-site. Multiple antenna. Multiple targets. Multiple transmit antennas. Receive antenna. System's performance. Radar. |
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| 20 | مقاله | Improving MIMO radar's performance through receivers' positioning | Chitgarha, M. M. | Institution of Engineering and Technology, | 2017 |
Antennas.
MIMO systems. Radar. Radar antennas. Radar signal processing. Radar systems. Receiving antennas. Ambiguity function. MIMO (multiple-input multiple output) MIMO detectors. Positioning procedures. Probability of detection. Receive antenna. System's performance. MIMO radar. |
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