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Correlation-Aware flow consolidation for load balancing and beyond
, Article Performance Evaluation Review ; Volume 49, Issue 4 , 2022 , Pages 105-110 ; 01635999 (ISSN) ; Buckley, M ; Pazhooheshy, P ; Farahvash, F ; Ganjali, Y ; Sharif University of Technology
Association for Computing Machinery
2022
Abstract
Existing load balancing solutions rely on direct or indirect measurement of rates (or congestion) averaged over short periods of time. Sudden fluctuations in flow rates can lead to significant undershooting/overshooting of target link loads. In this paper, we make the case for taking variations and correlations of flows into account in load balancing. We propose correlation-aware flow consolidation, i.e. aggregating inversely correlated (or uncorrelated) flows into superflows and using them as building blocks for load balancing. Superflows are smoother than individual flows, and thus are easier to estimate with a higher confidence, and can reduce overshooting/undershooting of link...
Uniquely 2-list colorable graphs
, Article Discrete Applied Mathematics ; Volume 119, Issue 3 , 2002 , Pages 217-225 ; 0166218X (ISSN) ; Ghebleh, M ; Hajiabolhassan, H ; Mirzazadeh, M ; Sadjad, B. S ; Sharif University of Technology
2002
Abstract
A graph is said to be uniquely list colorable, if it admits a list assignment which induces a unique list coloring. We study uniquely list colorable graphs with a restriction on the number of colors used. In this way, we generalize a theorem which characterizes uniquely 2-list colorable graphs. We introduce the uniquely list chromatic number of a graph and make a conjecture about it which is a generalization of the well-known Brooks' theorem. © 2002 Elsevier Science B.V
On Toda equation and half BPS supergravity solution in M-theory
, Article Journal of High Energy Physics ; Issue 1 , 2006 , Pages 565-578 ; 10298479 (ISSN) ; Sharif University of Technology
2006
Abstract
Recently, it was shown that half BPS Supergravity solution of theories with SU(2|4) symmetry algebra is given uniformly by determining a single function which obeys three dimensional continuous Toda equation. In this paper, we study the scale invariant solution of Toda equation. Our motivation is that some solutions of half BPS sector of IIB supergravity, as one excepts from the fermion description of the theory, are scale invariant. By defining two auxiliary functions we prove that such solutions of Toda equation obey cubic algebraic equation. We obtain some simpl solutions of Toda equation specially, we observe that the PP-wave solution can be written in this fashion. © SISSA 2006
DBI with primordial magnetic field in the sky
, Article Journal of High Energy Physics ; Issue 9 , 2005 , Pages 57-68 ; 10298479 (ISSN) ; Sharif University of Technology
2005
Abstract
In this paper, we study the generation of a large scale magnetic field with amplitude of order μG in an inflationary model which has been introduced in [1]. This inflationary model based on existence of a speed limit for inflaton field. Generating a mass for inflaton at scale above the φIR, breaks the conformal triviality of the Maxwell equation and causes to originate a magnetic field during the inflation. The amplitude strongly depends on the details of reheating stage and also depends on the e-foldings parameter N. We find the amplitude of the primordial magnetic field at decoupling time in this inflationary background using late time behavior of the theory. © SISSA 2005
Synthesis of metal nanoparticles using laser ablation technique
, Article Emerging Applications of Nanoparticles and Architectural Nanostructures: Current Prospects and Future Trends ; March , 2018 , Pages 575-596 ; 9780128135167 (ISBN); 9780323512541 (ISBN) ; Vahdatkhah, P ; Sharif University of Technology
Elsevier Inc
2018
Abstract
Pulse laser ablation (PLA) technique has been demonstrated to be a simple, compatible, promising, versatile, relatively low-cost, pure, and green approach with the absence of toxic chemicals and reagents for fabrication of metal nanoparticles. Purity is an especially important attribute of metal nanoparticles (NPs) in biological and medical technologies. For such applications, it is crucial to prepare metal NPs with the desired shape and size distribution. This chapter discusses the advantages of the PLA technique as compared with other techniques for metal NPs, explains the various mechanisms involved in the generation of metal NPs, outlines the effects of laser parameters, such as...
Design of a Double-Network Hydrogel Scaffold for Cartilage Tissue Engineering
, M.Sc. Thesis Sharif University of Technology ; Abdekhodaei, Mohammad Jafar (Supervisor)
Abstract
Osteoarthritis has always been one of the most common diseases in middle age because it causes severe pain and inflammation in the joints of the body. Cartilage tissue does not have the ability to repair itself. For this reason, fabricating and designing the most efficient, least-expensive, and most convenient methods for the treatment of cartilage defects is always an important issue. Today, there are surgical and injectable methods to relieve pain and initiate the body's natural healing response. But due to the many disadvantages and limitations of these methods, tissue engineering science has turned to modifying these methods or providing new methods. One of these methods is the use of...
Property change during nanosecond pulse laser annealing of amorphous NiTi thin film
, Article Bulletin of Materials Science ; Volume 35, Issue 3 , 2012 , Pages 357-364 ; 02504707 (ISSN) ; Yasavol, N ; Ganjali, M ; Sanjabi, S ; Sharif University of Technology
2012
Abstract
Nanosecond lasers of different intensities were pulsed into sputter-deposited amorphous thin films of near equiatomic Ni/Ti composition to produce partially crystallized highly sensitive R-phase spots surrounded by amorphous regions. Scanning electron microscopy having secondary and back-scattered electrons, field emission scanning electron microscopy, optical microscopy and X-ray diffraction patterns were used to characterize the laser treated spots. Effect of nanosecond pulse lasering on microstructure, morphology, thermal diffusion and inclusion formation was investigated. Increasing beam intensity and laser pulse-number promoted amorphous to R-phase transition. Lowering duration of the...
Multi-objective optimization of hybrid energy systems based on life cycle exergy and economic criteria
, Article Energy and Built Environment ; 2024 ; 26661233 (ISSN) ; Saboohi, Y ; Wang, G. G ; Fathi, A ; Sharif University of Technology
2024
Abstract
The present study aims to develop a novel optimal design of hybrid energy systems based on exergy and lifecycle concepts using genetic algorithms. The model consists of both stand-alone and on-grid options with scenarios for exchanging energy with the grid. The objectives include cost minimization or benefit maximization primarily, and lifecycle exergy efficiency, i.e., cost as the sustainability index secondarily. This research considers renewable sources such as solar, wind, hydropower, and hydrogen production and storage in addition to conventional diesel generators. The optimization was performed subject to weather conditions and solar radiation profiles, demand, and environmental or...
A multi-objective joint optimisation method for simultaneous part family formation and configuration design in delayed reconfigurable manufacturing system (D-RMS)
, Article International Journal of Production Research ; Volume 62, Issue 1-2 , 2024 , Pages 92-109 ; 00207543 (ISSN) ; Tan, J ; Lu, Y ; Moghaddam, K ; Wang, G ; Yan, Y ; Sharif University of Technology
2024
Abstract
In the era of Industry 4.0, the demand fluctuation has become fiercer due to the characteristics of diversification, customisation, and uncertainty. Reconfigurability of manufacturing systems has been proven to be a useful and necessary feature when it comes to handling demand uncertainty. This feature can be achieved through the implementation of reconfigurable manufacturing system (RMS) and delayed reconfigurable manufacturing system (D-RMS). D-RMS is a subclass of RMS that focuses primarily on improving the convertibility of the manufacturing system. The two main phases involved in implementing D-RMS are part family formation and configuration design. Therefore, we proposed a...
Size-dependent generalized thermoelasticity model for thermoelastic damping in circular nanoplates
, Article Waves in Random and Complex Media ; Volume 34, Issue 4 , 2024 , Pages 2795-2815 ; 17455030 (ISSN) ; Zhang, G ; Hu, P ; Yu, Y ; Mo, Y ; Borjalilou, V ; Sharif University of Technology
2024
Abstract
This paper assesses thermoelastic damping (TED) in circular nanoplates by incorporation of the small-scale effect into structural and thermal domains. The nonlocal elasticity theory and dual-phase-lag (DPL) heat conduction model are exploited for achieving the size-dependent coupled thermoelastic equations. By choosing time-harmonic and asymmetric form for deflection and temperature change, and solving the size-dependent thermoelastic eigenvalue problem, the damped natural frequency of circular nanoplate is extracted. On the basis of the complex frequency approach, an analytical relation, for the description of TED in circular nanoplates, is derived. For different boundary conditions and...
Environmental responsibility accounting in complex energy systems
, Article Journal of Cleaner Production ; Volume 166 , 2017 , Pages 998-1009 ; 09596526 (ISSN) ; Saboohi, Y ; Tsatsaronis, G ; Sharif University of Technology
2017
Abstract
Environmental considerations have imposed new restrictions in the planning and management of energy systems. This research aims at describing the necessity and application of a new concept in environmental responsibility accounting. The method is based on physical quantities to overcome the weaknesses of already developed allocation approaches, and to internalize the external environmental damages using the exergy concept. The proposed method is a modification of the exergoenvironmental analysis in order to take into account the effect of non-energy streams in a macro-level energy system. In the proposed method, environmental responsibilities are to be calculated based on the exergy...
Exergy-based responsibility allocation of climate change
, Article University Initiatives in Climate Change Mitigation and Adaptation ; 2018 , Pages 291-315 ; 9783319895901 (Online ISBN); 9783319895895 (Print ISBN) ; Saboohi, Y ; Tsatsaronis, G ; Sharif University of Technology
Springer International Publishing
2018
Abstract
Climate change as a serious environmental issue has been subjected to many management studies. Yet the issue of allocating global responsibilities to emission reduction in a reasonable way is an unconcluded challenge. Two main groups of responsibility allocation systems are production-based responsibilities (PBR) and consumption-based responsibilities (CBR). PBR takes territorial emissions within borders into account that is applied to global policy makings by the Intergovernmental Panel on Climate Change (IPCC). In contrast, CBR considers the emission transfers through international trade and allocates the responsibilities based on the goods and services being consumed by each country. Both...
Permissible emission limit estimation via iterative back-calculation: Case of Assaluyeh energy zone, southern Iran
, Article Integrated Environmental Assessment and Management ; Volume 14, Issue 1 , 2018 , Pages 130-138 ; 15513793 (ISSN) ; Saboohi, Y ; Tsatsaronis, G ; Sharif University of Technology
Wiley-Blackwell
2018
Abstract
In the present research work, an environmental policy procedure for setting a cap on emissions, as a crucial step in any total emission control system, has been provided and evaluated. It is shown that general regulations on emission intensities and rates do not guarantee that ambient air quality standards are met in intense industrial zones. Local emission limits are necessary to meet ambient air quality standards in these zones. To that end, we used dispersion simulators to back-calculate pollutant concentration thresholds for a large and intense energy system in the Assaluyeh region of southern Iran. Verified modeling results indicate 218 d of pollutant concentration threshold exceedance...
On the fair accounting of carbon emissions in the global system using an exergy cost formation concept
, Article Journal of Cleaner Production ; Volume 280 , 2021 ; 09596526 (ISSN) ; Saboohi, Y ; Tsatsaronis, G ; Sharif University of Technology
Elsevier Ltd
2021
Abstract
Carbon accounting is necessary for designing effective climate change mitigation policies. A proper and fair accounting method should motivate both the producers toward cleaner production methods and the consumers toward reducing the embodied emissions of their consumption. This research work proposes a new approach to map the production chain of carbon emissions in which every subsystem is responsible for the level and efficiency of its production activities and embodied emissions for providing its economic activities or final demands. The exergy cost formation concept is used to track the emissions in the production chain. The results of this accounting present the total carbon loads on...
Dynamic reconfiguration optimization of intelligent manufacturing system with human-robot collaboration based on digital twin
, Article Journal of Manufacturing Systems ; Volume 65 , 2022 , Pages 330-338 ; 02786125 (ISSN) ; Huang, S ; Wang, G ; Moghaddam, S. K ; Lu, Y ; Yan, Y ; Sharif University of Technology
Elsevier B.V
2022
Abstract
In Industry 4.0, the emergence of new information technology and advanced manufacturing technology (e.g., digital twin, and robot) promotes the flexibility and smartness of manufacturing systems to deal with production task fluctuation. Digital twin-driven manufacturing system with human-robot collaboration is a typical paradigm of intelligent manufacturing. When production task changes, manufacturing system reconfiguration with dynamic opeartion task allocation between operator (human) and robot is a key manner to maintain the production efficiency of intelligent manufacturing system with human-robot collaboration. However, the differences between operator and robot are neglected during...
Corrosion and time dependent passivation of Al 5052 in the presence of H2O2
, Article Metals and Materials International ; Volume 22, Issue 4 , 2016 , Pages 609-620 ; 15989623 (ISSN) ; Bagheri Hariri, M ; Sharifi Asl, S ; Yaghoubinezhad, Y ; Mortazavi, G ; Seo, Y ; Sharif University of Technology
Korean Institute of Metals and Materials
2016
Abstract
Corrosion and time–dependent oxide film growth on AA5052 Aluminum alloy in 0.25M Na2SO4 solution containing H2O2 was studied using electrochemical impedance spectroscopy, potentiodynamic polarization, chronoamperometric and open circuit potential monitoring. It was found that sequential addition of H2O2 provokes passivation of AA5052 which ultimately thickens the oxide film and brings slower corrosion rates for AA5052. H2O2 facilitates kinetics of oxide film growth on AA 5052 at 25° and 60 °C which is indicative of formation of a thick barrier film that leads to an increment in the charge transfer resistance. Pitting incubation time increases by introduction of H2O2 accompanied by lower...
Structural stability of nano-sized crystals of HMX: A molecular dynamics simulation study
, Article Applied Surface Science ; Volume 258, Issue 7 , 2012 , Pages 2226-2230 ; 01694332 (ISSN) ; Parsafar, G. A ; Bayat, Y ; Sharif University of Technology
2012
Abstract
The interaction potential energy and heat of sublimation of nanoparticles of HMX crystal polymorphs are studied by using molecular dynamics methods with a previously developed force field [Bedrov, et al., J. Comput.-Aided Mol. Des. 8 (2001) 77]. Molecular dynamics simulations of nanoparticles with 10, 20, 30, 40, 50, 60, 70, 80, 90, and 100 molecules of HMX are carried out at 300 K. The intermolecular, intramolecular and total interaction energies per mole for the nanoparticles are calculated at 300 K. Then, we have calculated sublimation enthalpy of HMX crystal polymorphs with different sizes. For the all sizes, the β-HMX is found to be the most stable phase, due to having the least total...
A selective chemiresistive sensor for the cancer-related volatile organic compound hexanal by using molecularly imprinted polymers and multiwalled carbon nanotubes
, Article Microchimica Acta ; Volume 186, Issue 3 , 2019 ; 00263672 (ISSN) ; Banan Nojavani, M ; Nikkhah, M ; Alizadeh, T ; Esfandiar, A ; Ganjali, M. R ; Sharif University of Technology
Springer-Verlag Wien
2019
Abstract
A chemiresistive sensor is described for the lung cancer biomarker hexanal. A composite consisting of molecularly imprinted polymer nanoparticles and multiwalled carbon nanotubes was used in the sensor that is typically operated at a voltage of 4 V and is capable of selectively sensing gaseous hexanal at room temperature. It works in the 10 to 200 ppm concentration range and has a 10 ppm detection limit (at S/N = 3). The sensor signal recovers to a value close to its starting value without the need for heating even after exposure to relatively high levels of hexanal
Investigation of novel polyurethane elastomeric networks based on polybutadiene-ol/polypropyleneoxide mixture and their structure-properties relationship
, Article Materials and Design ; Volume 32, Issue 7 , 2011 , Pages 3933-3941 ; 02641275 (ISSN) ; Sadeghi, G. M. M ; Kashcooli, Y ; Sharif University of Technology
2011
Abstract
Polyurethane elastomer networks were designed and synthesized based on hydroxyl terminated polybutadiene/polypropyleneoxide (HTPB/PPO) mixtures, 2,4-toluene diisocyanate and 1,4-butanediol. Various networks with different molar ratio of HTPB to PPO (0/100, 25/75, 50/50, 75/25 and 100/0) had been prepared. Depending on the length of soft segment, average functionality of polyol mixtures, mechanical and thermal properties of samples were varied. Our observations confirmed that final properties of the networks can be attributed to two synergistic factors: (a) formation of chemical network (crosslinking) and (b) soft segment length. An optimum composition was found. This optimum composition...
A low complexity architecture for the cell search applied to the LTE systems
, Article 2012 19th IEEE International Conference on Electronics, Circuits, and Systems, ICECS 2012, 9 December 2012 through 12 December 2012 ; Dec , 2012 , Pages 300-303 ; 9781467312615 (ISBN) ; Sharifan, G ; Amini, Y ; Shabany, M ; Sharif University of Technology
2012
Abstract
Cell search is a crucial process in the synchronization procedure for the 3rd Generation Partnership Project (3GPP) Long Term Evolution (LTE) system. In this paper, a high-speed, low-complexity and reliable architecture is proposed for both steps of cell search: sector ID and cell ID group detection. For the sector ID detection, two novel methods, sign-bit reduction and wise resource sharing, are proposed. In addition, for the cell ID group detection, we proposed an algorithm based on the Maximum Likelihood Sequence Detection (MLSD) called 'sign-bit MLSD'. Simulations show that the proposed methods result in more than 90% reduction in area compared to the state-of-the-art. We designed and...