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A framework for resiliency assessment of power communication networks
, Article Scientia Iranica ; Volume 21, Issue 6, 2014, Pages 2399-2418 , 2014 , Pages 2399-2418 ; ISSN: 10263098 ; Jahromi, A. E ; Sharif University of Technology
2014
Abstract
Modern societies are strongly dependent on the continuous and efficient operation of electric power systems as a critical infrastructure. Besides, information and communication systems play a crucial role in the resiliency enhancement of the power system. As power communication systems are vulnerable against physical and cyber attack, these systems themselves can be an internal source of threat for power grids. Therefore, there is a need to identify and study the threats and weaknesses of power communication systems using a comprehensive framework. This framework helps power communication network planners evaluate all challenges and their numerous effects on the system, as a very important...
Designing a communication network using simulation
, Article Scientia Iranica ; Volume 11, Issue 3 , 2004 , Pages 165-180 ; 10263098 (ISSN) ; Besharati Rad, Z ; Sharif University of Technology
Sharif University of Technology
2004
Abstract
In this paper, a private telephone communication network of an electrical energy distribution company has been studied analytically and through discrete event system simulation. Considering the pitfalls and difficulties associated with the analytical approach in designing such a network and the power and performance of a simulation methodology in this regard, a simulation model was developed using GPSS/H simulation language. After data collection and analysis, model development and validation, initial transient study and design of experimental phases, the model was applied to determine the operating performance of the current system, as well as to evaluate the performance of any newly...
Hydrodynamics analysis of Density currents
, Article International Journal of Engineering, Transactions B: Applications ; Volume 21, Issue 3 , 2008 , Pages 211-226 ; 1728-144X (ISSN) ; Firoozabadi, B ; Rad, M ; Sharif University of Technology
Materials and Energy Research Center
2008
Abstract
Density Current is formed when a fluid with heavier density than the surrounding fluid flows down an inclined bed. These types of flows are common in nature and can be produced by; salinity, temperature inhomogeneities, or suspended particles of silt and clay. Driven by the density difference between inflow and clear water in reservoirs, density current plunges clear water and moves towards a dam, while density current flows on a sloping bed. The vertical spreading due to water entrainment has an important role in determining the propagation rate in the longitudinal direction. In this work, two-dimensional steady-state salt solutions' density currents were investigated by means of...
Hydrodynamics of two-dimensional, laminar turbid density currents
, Article Journal of Hydraulic Research ; Volume 41, Issue 6 , 2003 , Pages 623-630 ; 00221686 (ISSN) ; Farhanieh, B ; Rad, M ; Sharif University of Technology
International Association of Hydraulic Engineering Research
2003
Abstract
Motion of turbid density currents laden fine solid particles, released on sloping bed and under still bodies of clear water, are numerically investigated. The equations of mass, momentum and diffusion for unsteady, laminar flow are solved at the same time in the fixed Cartesian directions, on a non-staggered grid using finite volume scheme. The velocity-pressure coupling is handled by SIMPLEC method. Turbidity currents with uniform velocity and concentration enter the channel via a sluice gate into a lighter ambient fluid and move forward down-slope. At the front of this flow, a vortex forms and grows while moving downstream. Comparison of the computed height of turbidity current with the...
Hydrodynamics of two-dimensional laminar turbid density currents
, Article Scientia Iranica ; Volume 10, Issue 1 , 2003 , Pages 122-130 ; 10263098 (ISSN) ; Farhanieh, B ; Rad, M ; Sharif University of Technology
Sharif University of Technology
2003
Abstract
In this paper, the motion of turbid density currents, laden with fine solid particles, released on sloping beds and under still bodies of clear water, has been numerically investigated. The equations of mass, momentum and diffusion for unsteady, laminar flow are solved at the same time, in the fixed Cartesian directions, on a non-staggered grid using a finite volume scheme. The velocity-pressure coupling is handled by using the SIMPLEC method. Turbidity currents with uniform velocity and concentration enter the channel via a sluice gate into a lighter ambient fluid and move forward down-slope. At the front of this flow, a vortex forms and grows while moving downstream. Comparison of the...
The propagation of turbulent density currents on sloping beds
, Article Scientia Iranica ; Volume 8, Issue 2 , 2001 , Pages 130-137 ; 10263098 (ISSN) ; Firoozabadi, B ; Rad, M ; Sharif University of Technology
Sharif University of Technology
2001
Abstract
In this paper, the motion of density currents, released on sloping beds and under still bodies of clear water, is numerically investigated. The turbulent flow equations of mass, momentum and diffusion are solved simultaneously in the fixed Cartesian directions, on a non-staggered grid using finite-volume scheme. The velocity-pressure coupling is handled by SIMPLEC method. A modified k - ε model is used to account for the influence of Reynolds stresses in the turbulent momentum equations. Density currents with uniform velocity and concentration enter the channel via a sluice gate into a lighter ambient fluid and move forward down the slope. Comparison of the computed velocity, concentration...
Mathematical analysis of optimal tracking interval management for power efficient target tracking wireless sensor networks
, Article Iranian Journal of Electrical and Electronic Engineering ; Volume 8, Issue 3 , 2012 , Pages 195-205 ; 17352827 (ISSN) ; Abolhassani, B ; Abdizadeh, M ; Sharif University of Technology
2012
Abstract
We study the problem of power efficient tracking interval management for distributed target tracking wireless sensor networks (WSNs). We first analyze the performance of a distributed target tracking network with one moving object, using a quantitative mathematical analysis. We show that previously proposed algorithms are efficient only for constant average velocity objects; however, they do not ensure an optimal performance for moving objects with acceleration. Towards an optimal performance, first, we derive a closed-form mathematical expression for the estimation of the minimal achievable power consumption by an optimal adaptive tracking interval management algorithm. This can be used as...
Heat transfer enhancement in shell-and-tube heat exchangers using porous media
, Article Heat Transfer Engineering ; Volume 36, Issue 3 , 2015 , Pages 262-277 ; 01457632 (ISSN) ; Afshin, H ; Farhanieh, B ; Sharif University of Technology
Taylor and Francis Ltd
2015
Abstract
A numerical simulation has been carried out to investigate the heat transfer enhancement in a shell-and-tube heat exchanger using a porous medium inside its shell and tubes, separately. A three-dimensional geometry with k-ε turbulent model is used to predict the heat transfer and pressure drop characteristics of the flow. The effects of porosity and dimensions of these media on the heat exchanger's thermal performance and pressure drop are analyzed. Inside the shell, the entire tube bundle is wrapped by the porous medium, whereas inside the tubes the porous media are located in two different ways: (1) at the center of the tubes, and (2) attached to the inner wall of the tubes. The results...
An energy efficient target tracking scheme for distributed wireless sensor networks
, Article Proceedings of the 2009 6th International Symposium on Wireless Communication Systems, ISWCS'09, 7 September through 10 September ; 2009 , Pages 136-140 ; 9781424435845 (ISBN) ; Abolhassani, B ; Abdizadeh, M ; Sharif University of Technology
2009
Abstract
We study the problem of power optimization for object tracking using distributed Wireless Sensor Networks (WSNs). The accuracy of the object tracking is dependent on the tracking time interval. Smaller tracking time interval increases the accuracy of tracking a moving object. However, this increases the power consumption significantly. This paper proposes a modified adaptive sleep time management scheme called Modified Predict and Mesh (MPaM) to adapt tracking time interval such that it minimizes power consumption while keeping an acceptable tracking accuracy. Also a quantitative analysis to compare the performances of the conventional PaM and proposed Modified PaM (MPaM) schemes is...
Towards the optimal tracking interval management for target tracking wireless sensor networks
, Article ATC 2009 - Proceedings of the 2009 International Conference on Advanced Technologies for Communications, 12 October 2009 through 14 October 2009 ; 2009 , Pages 161-166 ; 9781424451395 (ISBN) ; Abolhassani, B ; Abdizadeh, M ; Sharif University of Technology
2009
Abstract
We consider the minimization of power consumption in target tracking wireless sensor networks (WSNs) using dynamic modification of tracking interval. In this context, we first analyze the performance of such networks, using a quantitative mathematical analysis. Then we calculate an upper bound for the achievable improvement in total power consumption, when using an adaptive time interval modification algorithm for tracking moving objects with acceleration. Towards this optimum functionality, we propose a novel adaptive algorithm (AHC) to adapt the tracking interval such that it minimizes power consumption while keeping an acceptable accuracy. Simulation results show that using the proposed...
Biological upgrading of heavy oil cuts using native microbial consortia as an environmental-friendly technology in petroleum refineries
, Article Advances in Environmental Technology ; Volume 8, Issue 3 , 2022 , Pages 215-228 ; 24766674 (ISSN) ; Ziaei Rad, Z ; Shayegan, J ; Pazouki, M ; Hossinia, A ; Sharif University of Technology
Iranian Research Organization for Science and Technology
2022
Abstract
Refineries are amongst the most energy-intensive and polluting industries in the world. Biotechnology may serve as an alternative low-cost and environmental-friendly tool to the current costly, toxic and hazardous refining processes. In this study, the compositional redistribution of a heavy hydrocarbon cut is investigated under biological conversion using native microbial consortia. The native consortia were obtained by batch enrichment method applied on oil-polluted soil samples from oil refineries of Iran. The bioconversion experiments were conducted with 20% and 40% (v/v) of the heavy cut as the sole carbon source and 10% (v/v) of the consortia broth in 250 ml flasks containing a mineral...
FREEDOM II: An improved methodology to assess domino effect frequency using simulation techniques
, Article Process Safety and Environmental Protection ; 2014 ; ISSN: 09575820 ; Abdolhamidzadeh, B ; Abbasi, T ; Rashtchian, D ; Sharif University of Technology
2014
Abstract
The uncertainty and the complexity associated with the domino effect is a barrier to assessing the frequency of such accidents analytically. The use of simulation techniques, such as Monte Carlo, to examine the domino effect instead of analytical techniques has shown great promise. In this paper, a new method to assess the frequency of domino accidents is proposed-FREEDOM II-which is an improvement on the recent algorithm proposed by the authors (FREEDOM). The modifications on FREEDOM were carried out to overcome a limitation of the method and to extend its capabilities. A key shortcoming of the earlier method was its inability to handle multiple failure scenarios. This shortcoming has been...
A new adaptive prediction-based tracking scheme for wireless sensor networks
, Article Proceedings of the 7th Annual Communication Networks and Services Research Conference, CNSR 2009, 11 May 2009 through 13 May 2009, Moncton, NB ; 2009 , Pages 335-341 ; 9780769536491 (ISBN) ; Abolhassani, B ; Abdizadeh, M. T ; Sharif University of Technology
2009
Abstract
The accuracy of the object tracking is dependent on the tracking time interval. Smaller tracking time interval increases the accuracy of tracking a moving object. However, this increases the power consumption significantly. This paper proposes a new adaptive algorithm (AEC) to adapt tracking time interval such that it minimizes power consumption while keeping the required accuracy. Simulation results show that using the proposed algorithm, the tracking network has a good performance with the added advantage of reducing the power consumption significantly when compared with existing nonadaptive methods (like PATES). Moreover, simulation results show that the performance of the proposed...
4-tert-butyl pyridine additive for moisture-resistant wide bandgap perovskite solar cells
, Article Optical Materials ; Volume 123 , 2022 ; 09253467 (ISSN) ; Azizollah Ganji, B ; Taghavinia, N ; Sharif University of Technology
Elsevier B.V
2022
Abstract
Perovskite solar cells fabrication process need inert or low humidity atmospheres. While highly efficient perovskite solar cells to overcome the photovoltaic marketing should be achieved stability at any environmental conditions. At high humidity, water molecules react with the perovskite layer and increase the degradation rate, leading to a drastic decrease in device performance and perovskite crystallinity. In this work, the effect of environmental humidity on photophysical parameters of wide bandgap, (WBG) perovskite layer and solar cells stability is systematically investigated and tBP is proposed as an additive in perovskite precursor to increase the moisture resistance and improve the...
Botulinum toxin a dissolving microneedles for hyperhidrosis treatment: design, formulation and in vivo evaluation
, Article Biomaterials Science ; Volume 11, Issue 24 , 2023 , Pages 7784-7804 ; 20474830 (ISSN) ; Rad Malekshahi, M ; Shafiei, M ; Sharifi, F ; Motasadizadeh, H ; Ebrahiminejad, V ; Rad Malekshahi, M ; Akbarijavar, H ; Faraji Rad, Z ; Sharif University of Technology
Royal Society of Chemistry
2023
Abstract
Multiple periodic injections of botulinum toxin A (BTX-A) are the standard treatment of hyperhidrosis which causes excessive sweating. However, BTX-A injections can create problems, including incorrect and painful injections, the risk of drug entry into the bloodstream, the need for medical expertise, and waste disposal problems. New drug delivery systems can substantially reduce these problems. Transdermal delivery is an effective alternative to conventional BTX-A injections. However, BTX-A's large molecular size and susceptibility to degradation complicate transdermal delivery. Dissolving microneedle patches (DMNPs) encapsulated with BTX-A (BTX-A/DMNPs) are a promising solution that can...
Joint optimization of power allocation and relay selection in cooperative wireless sensor networks
, Article 2009 IEEE 3rd International Symposium on Advanced Networks and Telecommunication Systems, ANTS 2009, 14 December 2009 through 16 December 2009 ; 2009 ; 9781424459896 (ISBN) ; Abdizadeh, M ; Meshgi, H ; Abolhassani, B ; Sharif University of Technology
2009
Abstract
We study the problem of optimizing the symbol error probability (SEP) performance of cluster-based cooperative wireless sensor networks (WSNs). We propose that to achieve the minimum SEP at the destination, a joint optimization of power allocation and relay selection should be accomplished. To this aim, we reformulate the SEP performance of a simple cluster-based cooperative WSN in the general form and solve the joint optimization problem efficiently. Simulation results demonstrate that the proposed joint optimization can efficiently improve the SEP performance of the network in comparison with the previous disjoint optimal relay selection schemes
Inverse design of supersonic diffuser with flexible walls using a Genetic Algorithm
, Article Journal of Fluids and Structures ; Volume 22, Issue 4 , 2006 , Pages 529-540 ; 08899746 (ISSN) ; Ziaei-Rad, M ; Sharif University of Technology
2006
Abstract
An efficient algorithm for the design optimization of the compressible fluid flow problem through a flexible structure is presented. The methodology has three essential parts: first the behavior of compressible flow in a supersonic diffuser was studied numerically in quasi-one-dimensional form using a flux splitting method. Second, a fully coupled sequential iterative procedure was used to solve the steady state aeroelastic problem of a flexible wall diffuser. Finally, a robust Genetic Algorithm was implemented and used to calculate the optimum shape of the flexible wall diffuser for a prescribed pressure distribution. © 2006 Elsevier Ltd. All rights reserved
Decorrelating closely-placed antennas by pattern design in uniform scattering environments
, Article 2008 10th International Conference on Advanced Communication Technology, Phoenix Park, 17 February 2008 through 20 February 2008 ; Volume 3 , 2008 , Pages 2092-2095 ; 17389445 (ISSN); 9788955191356 (ISBN) ; Hossein Khalaj, B ; Shishegar, A. A ; Saligheh Rad, H ; Sharif University of Technology
2008
Abstract
MIMO system's performance depends greatly on the correlation of employed antennas. The more the correlation is, the worse the performance will be. We propose a solution to the problem of decorrelating closely spaced antennas assuming the antennas have identical radiation patterns with the same steering angles. In fact, we will show that by proper steering of the antenna patterns, the decorrelation distance is reduced to 0.25λ which is a great improvement comparing with the well-established 0.4λ result coming from the Bessel-shaped correlation expression. Also, we analyze this result in the regime of very closely placed antennas and by proposing the definition of Decorrelation Factor of an...
A maximal inequality for pth power of stochastic convolution integrals
, Article Journal of Inequalities and Applications ; Volume 2016, Issue 1 , 2016 ; 10255834 (ISSN) ; Zangeneh, B. Z ; Sharif University of Technology
Springer International Publishing
2016
Abstract
We prove an inequality for the pth power of the norm of a stochastic convolution integral in a Hilbert space. The inequality is stronger than analogous inequalities in the literature in the sense that it is pathwise and not in expectation
Continuous dependence on coefficients for stochastic evolution equations with multiplicative lévy noise and monotone nonlinearity
, Article Bulletin of the Iranian Mathematical Society ; Volume 42, Issue 1 , 2016 , Pages 175-194 ; 10186301 (ISSN) ; Zangeneh, B. Z ; Sharif University of Technology
Iranian Mathematical Society
2016
Abstract
Semilinear stochastic evolution equations with multiplicative Lévy noise are considered. The drift term is assumed to be monotone nonlinear and with linear growth. Unlike other similar works, we do not impose coercivity conditions on coefficients. We establish the continuous dependence of the mild solution with respect to initial conditions and also on coefficients. As corollaries of the continuity result, we derive sufficient conditions for asymptotic stability of the solutions, we show that Yosida approximations converge to the solution and we prove that solutions have Markov property. Examples on stochastic partial differential equations and stochastic delay differential equations are...