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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | مقاله | DeePLT: personalized lighting facilitates by trajectory prediction of recognized residents in the smart home | Safaei, D. | 2024 |
Face recognition.
Inverse reinforcement learning. Object detection. Smart home. Tracking. Trajectory prediction. |
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| 2 | مقاله | ELITE: An elaborated cross-layer rpl objective function to achieve energy efficiency in internet-of-things devices | Safaei, B. | Institute of Electrical and Electronics Engineers Inc, | 2021 |
Electric power transmission.
Energy efficiency. Energy utilization. Medium access control. Power management (telecommunication) Consumed energy. Energy efficient. Evaluation results. Medium access control layer. Objective functions. Parent selection. Routing metrics. Transmission operation. Internet of things. |
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| 3 | مقاله | Effects of RPL objective functions on the primitive characteristics of mobile and static IoT infrastructures | Safaei, B. | Elsevier B.V, | 2019 |
IPv6 Routing Protocol for Low-power and lossy networks.
Mobility. Objective function. Carrier mobility. Electric power utilization. Internet protocols. Low power electronics. Network routing. Power management (telecommunication) Routing protocols. IOT applications. Low Power. Mobile applications. Mobile conditions. Objective functions. Routing mechanism. Routing policies. State of the art. Internet of things. |
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| 4 | مقاله | Multiobjective design of an S control chart for monitoring process variability | Safaei, A. S. | 2012 |
ATL.
Average total loss. Immeasurable costs. Multiobjective economic-statistical design. NSGA-II algorithm. Process variability. S control chart. Taguchi loss function. |
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| 5 | مقاله | Spatial resolution enhancement in fiber Raman distributed temperature sensor by employing ForWaRD deconvolution algorithm | Bahrampour, A. R. | 2011 |
Fiber Raman.
ForWaRD. Resolution enhancement. Temperature sensor. Anti-Stokes. Continuous wave modes. Counterpropagating. Deconvolution algorithm. Distributed temperature sensor. Fiber impulse response. Fourier wavelets. Governing equations. In-fiber. Laser sources. Pulse width. Pump pulse. Raman amplifier. Raman fiber. Raman signal. Spatial resolution. Spatial-resolution enhancement. Convolution. Deconvolution. Image resolution. Integral equations. Light amplifiers. Optical fibers. Raman spectroscopy. Temperature sensors. Fibers. |
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| 6 | مقاله | Multi-Objective economic statistical design of X-Bar control chart considering taguchi loss function | Safaei, A. S. | 2012 |
Average total loss (ATL)
Multiobjective economic statistical design. NSGA-II algorithm. Control charts. Economic statistical design. NSGA-II algorithm. Taguchi loss functions. Total loss. Design. Parameter estimation. Robustness (control systems) Statistical process control. Taguchi methods. Flowcharting. |
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| 7 | مقاله | Dynamic routing of data stream tuples among parallel query plan running on multi-core processors | Safaei, A. A. | 2012 |
Data stream.
Multi-core systems. Multistage interconnection network. Parallel processing. Query plan. Data communication systems. Image coding. Microprocessor chips. Parallel processing systems. |
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| 8 | مقاله | Objective function: a key contributor in internet of things primitive properties | Safaei, B. | Institute of Electrical and Electronics Engineers Inc, | 2018 |
Internet of things.
LLN. Objective function. Performance. Power consumption. Reliability. Routing protocol. RPL. Electric power utilization. Embedded systems. Power management (telecommunication) Real time systems. Routing protocols. Contiki. Daily lives. Embedded device. Evaluation results. Internet of things (IOT) Objective functions. Simulation environment. Internet of things. |
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| 9 | مقاله | Learning-Oriented QoS- and drop-aware task scheduling for mixed-criticality systems | Ranjbar, B. | MDPI, | 2022 |
Drop rate.
Dynamic slack. Machine-Learning. Mixed-Criticality. Quality-of-Service (QoS) Run-time management. |
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| 10 | مقاله | A novel LNA circuit in the L band with the purpose of increasing gain in GSM GPS in wireless multi-receiver systems | Kamalijam, S. | Institute of Electrical and Electronics Engineers Inc, | 2019 |
Qain.
Linear. LNA. Stability. Telecommunications; wireless. Convergence of numerical methods. Noise figure. Timing circuits. Advanced design system softwares. Input and outputs. L-band frequencies. Multi-receiver systems. Noise amplifiers. Signal stability. Low noise amplifiers. |
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| 11 | مقاله | COACH: Consistency aware check-pointing for nonvolatile processor in energy harvesting systems | Hosseinghorban, A. | IEEE Computer Society, | 2021 |
Energy efficiency.
Static random access storage. Battery-operated systems. Check pointing. Data inconsistencies. Energy efficient. Energy harvesting systems. Energy overheads. Environmental conditions. State of the art. Energy harvesting. |
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| 12 | مقاله | Weighing criteria and prioritizing strategies to reduce motorcycle-related injuries using combination of fuzzy topsis and ahp methods | Safaei, B. | Aracne Editrice, | 2021 |
Automobile drivers.
Highway accidents. Analytical Hierarchy Process. Economic consequences. Environmental conditions. Fuzzy techniques. Motor vehicle crashes. Motorcycle crashes. Professional training. Underlying factors. Reliability theory. |
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| 13 | مقاله | REFER: A reliable and energy-efficient RPL for mobile IoT applications | Rezagholi Lalani, S. | Institute of Electrical and Electronics Engineers Inc, | 2020 |
Energy Consumption.
Handover. Mobile Internet of Things. Objective Function. Parent Selection. Reliability. Replacement Policy. Routing. RPL. |
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| 14 | مقاله | COACH: Consistency aware check-pointing for nonvolatile processor in energy harvesting systems | Hoseinghorban, A. | IEEE Computer Society, | 2019 |
Data consistency.
Energy harvesting system. Energy-efficiency. Nonvolatile memory. Energy efficiency. Static random access storage. Battery-operated systems. Data inconsistencies. Energy efficient. Energy harvesting systems. Environmental conditions. Non-volatile memory. State of the art. Energy harvesting. |
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| 15 | مقاله | COACH: Consistency aware check-pointing for nonvolatile processor in energy harvesting systems | Hoseinghorban, A. | IEEE Computer Society, | 2019 |
Data consistency.
Energy harvesting system. Energy-efficiency. Nonvolatile memory. Energy efficiency. Static random access storage. Battery-operated systems. Data inconsistencies. Energy efficient. Energy harvesting systems. Environmental conditions. Non-volatile memory. State of the art. Energy harvesting. |
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| 16 | مقاله | LIMO: load-balanced offloading with MAPE and particle swarm optimization in mobile fog networks | Seraj, Y. | IEEE, | 2024 |
Cloud Computing.
Fog Computing. Internet of Things. Load Balancing. MAPE Control Loop. Particle Swarm Optimization. Task Migration. Computation offloading. |
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| 17 | مقاله | EdgeLinker: practical blockchain-based framework for healthcare fog applications to enhance security in Edge-IoT data communications | Zarkesh, M. A. | IEEE, | 2024 |
Fog Computing.
Healthcare. Internet of Things. Privacy. Security. Smart Contracts. Access control. Blockchain. Data privacy. Differential privacy. |
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| 18 | مقاله | A robust PN length estimation in down link low- SNR DS-CDMA multipath channels | Samsami Khodadad, F. | 2010 |
Second order statistic estimator.
Autocorrelation matrix. Blind detection. DS-CDMA. Second order statistics. Autocorrelation. Code division multiple access. Correlation detectors. Multipath propagation. Signal detection. Signal to noise ratio. Spectroscopy. Strategic planning. Sustainable development. Estimation. |
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| 19 | مقاله | Pedal: Power-delay product objective function for internet of things applications | Safaei, B. | Association for Computing Machinery, | 2019 |
Internet of Things.
Objective Function. Performance. Power Consumption. Remote Health Monitoring Systems. RPL. Electric power utilization. Energy efficiency. Low power electronics. Power management (telecommunication) Evaluation results. IOT applications. Lossy networks. Objective functions. Power delay product. Remote health monitoring. Simulation environment. |
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| 20 | مقاله | Pedal: Power-delay product objective function for internet of things applications | Safaei, B. | Association for Computing Machinery, | 2019 |
Objective Function.
Performance. Power Consumption. Remote Health Monitoring Systems. RPL. Electric power utilization. Energy efficiency. Low power electronics. Power management (telecommunication) Evaluation results. IOT applications. Lossy networks. Objective functions. Power delay product. Remote health monitoring. Simulation environment. Internet of things. |
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