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Somayeh Asadi

Publications and source records attributed to Somayeh Asadi.

3 recordsLinked to original sources

UAV-Based Infrastructure Inspections: A Literature Review and Proposed Framework for AEC+FM

Unmanned Aerial Vehicles (UAVs) are transforming infrastructure inspections in the Architecture, Engineering, Construction, and Facility Management (AEC+FM) domain. By synthesizing insights from over 150 studies, this review paper highlights UAV-based methodologies for data acquisition, photogrammetric modeling, defect detection, and decision-making support. Key innovations include path optimization, thermal integration, and advanced machine learning (ML) models such as YOLO and Faster R-CNN for anomaly detection. UAVs have demonstrated value in structural health monitoring (SHM), disaster response, urban infrastructure management, energy efficiency evaluations, and cultural heritage preservation. Despite these advancements, challenges in real-time processing, multimodal data fusion, and generalizability remain. A proposed workflow framework, informed by literature and a case study, integrates RGB imagery, LiDAR, and thermal sensing with transformer-based architectures to improve accuracy and reliability in detecting structural defects, thermal anomalies, and geometric inconsistencies. The proposed framework ensures precise and actionable insights by fusing multimodal data and dynamically adapting path planning for complex environments, presented as a comprehensive step-by-step guide to address these challenges effectively. This paper concludes with future research directions emphasizing lightweight AI models, adaptive flight planning, synthetic datasets, and richer modality fusion to streamline modern infrastructure inspections.

cs.CV

Financial Risk-Based Scheduling of Microgrids Accompanied by Surveying the Influence of the Demand Response Program

This paper presents an optimization approach based on the mixed-integer programming (MIP) to maximize the profit of the Microgrid (MG) while minimizing the risk in profit (RIP) in the presence of demand response program (DRP). RIP is defined as the risk of gaining less profit from the desired profit values. The uncertainties associated with the RESs and loads are modeled using normal, Beta, and Weibull distribution functions. The simulation studies are performed in GAMS and MATLAB for 5 random days in a year. The simulation results show that RIP is reduced when downside risk constraint (DRC) is considered and DRP is implemented. Although DRP increases the total profit of the MG, it also notably increases the risk. On the other hand, considering DRC significantly reduces the percentage of the risk with a slight decrease in the profit.

eess.SY

Gold nanoparticles-based brachytherapy enhancement in choroidal melanoma using a full Monte Carlo modelling of human eye

The effects of gold nanoparticles in 125I brachytherapy dose enhancement on choroidal Melanoma are examined using the Monte Carlo simulation technique. Usually, Monte Carlo ophthalmic brachytherapy dosimetry is performed in a water phantom. However, here, the compositions of human eye have been considered instead of water. Both human eye and water phantoms have been simulated with MCNP5 code. These simulations were performed for a fully-loaded 16 mm COMS eye plaque containing 13 125I seeds. The dose delivered to the tumor and healthy tissues have been calculated in both phantoms, with and without GNPs. The results indicates that the dose to the tumor in an eye-ball implanted with COMS plaque increases with increasing GNPs concentration inside the target. Therefore, the required irradiation time for the tumors in the eye is decreased by adding the GNPs prior to treatment. As a result, the dose to healthy tissues decreases when the irradiation time is reduced. Furthermore, a comparison between the simulated data in an eye phantom made of water and eye phantom made of human-eye composition, in the presence of GNPs shows the significance of utilizing the composition of eye in ophthalmic brachytherapy dosimetry. Normally, the radiation therapy of cancer patients is designed to deliver a required dose to the tumor while sparing the surrounding healthy tissues. The results demonstrated that the use of GNPs enable us to overcome this challenge. Also, defining the eye composition instead of water will leads to more accurate calculations of GNPs radiation effects in ophthalmic brachytherapy dosimetry.

physics.med-ph