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    Novel multifunctional bioactive glass incorporated alginate/poly(amidoamine) hydrogels with controlled drug release for cartilage tissue regeneration

    , Article Journal of Materials Science ; Volume 59, Issue 4 , 2024 , Pages 1550-1569 ; 00222461 (ISSN) Motesadi Zarandi, F ; Alizadeh, P ; Kohoolat, G ; Kaviani, A ; Sharif University of Technology
    2024
    Abstract
    Tissue engineering faces an intriguing challenge in creating biomaterials for cartilage repair. Within the category of biopolymeric scaffolds, hydrogels made from polysaccharides are particularly suitable for regenerating cartilage tissue. In this paper, a new formulation of biocompatible alginate-based hydrogel for joint cartilage regeneration was investigated. An alginate-dendrimer hydrogel obtained by covalently grafting alginate with polyamidoamine generation 5 dendrimer. 58S bioactive glass was synthesized through sol–gel procedures and was added to the hydrogel before cross-linking. The obtained hydrogel is an innovative system with sustained drug-releasing properties and improved... 

    Comprehensive design of a toroidally-wound limited angle torque motor

    , Article International Review of Electrical Engineering ; Volume 6, Issue 1 , 2011 , Pages 198-206 ; 18276660 (ISSN) Zarandi, R. N ; Kelk, H. M ; Toorani, F ; Farahmandzad, H ; Sharif University of Technology
    2011
    Abstract
    This paper presents a comprehensive design procedure of a brushless DC limited angle torque motor (LATM) based on magnetic equivalent circuit analysis which predicts its performance and magnetic characteristics. Design of toroidally wounded armature and rotor with two pole tip segments are developed using selected ferromagnetic material and rare earth permanent magnets. Derivation of airgap and other motor dimensions and design parameters with their expressions are given. A finite element analysis verification of designed LATM using a 2D modeling and simulating package is presented. Performance characteristic of analytical model and FEA model of designed LATM is compared which validates the... 

    Numerical Simulation of Continuous Phase Effects on Droplet Generation in a Step Emulsification Microdevice

    , Article Iranian Journal of Science and Technology - Transactions of Mechanical Engineering ; 2024 ; 22286187 (ISSN) Rahimi, P ; Moussavi Zarandi, N. S ; Moussavi Zarandi, S. A ; Sharif University of Technology
    2024
    Abstract
    Continuous phase plays a crucial role in droplet formation as it significantly influences both the droplet size and the rate of formation. A clear understanding of this relationship is essential for optimizing droplet production and achieving consistent, controlled outcomes in microfluidic applications. Recent experimental studies on step emulsification have utilized high continuous phase flow rates to expedite droplet detachment and enhance generation rates. However, the precise effects of this flow have not yet been thoroughly investigated. This study presents a comprehensive three-dimensional, time-dependent numerical study of droplet generation in a step-emulsification microdevice,... 

    The role of mixed reaction promoters in polyol synthesis of high aspect ratio ag nanowires for transparent conducting electrodes

    , Article Journal of Electronic Materials ; Volume 49, Issue 8 , 2020 , Pages 4822-4829 Amiri Zarandi, A ; Khosravi, A ; Dehghani, M ; Tajabadi, F ; Taghavinia, N ; Sharif University of Technology
    Springer  2020
    Abstract
    In recent years, thin silver nanowires (Ag NWs) with diameters smaller than 150 nm have been synthesized by implementation of NaCl or FeCl3 as reaction promoters and high molecular weight polyvinylpyrrolidone (PVP) as the capping agent. However, the yield of Ag NWs still remains low, mostly due to the insufficient aspect ratio (AR) of the synthesized nanostructures and the production of Ag nanoparticles, which is an undesirable by product. This study proposes a modified technique to alleviate the problem by using a mixture of FeCl3/CuCl2 as the reaction promoter and two different types of PVP with molecular weight of 360 k and 40 k as the capping agents. The appropriate mixtures of... 

    Hierarchical set-associate cache for high-performance and low-energy architecture

    , Article Journal of Circuits, Systems and Computers ; Volume 15, Issue 6 , 2006 , Pages 861-880 ; 02181266 (ISSN) Zarandi, H. R ; Miremadi, G ; Sharif University of Technology
    2006
    Abstract
    This paper presents a new cache scheme based on varying the size of sets in the set-associative cache hierarchically. In this scheme, all sets at a hierarchical level have same size but are fc times more than the size of sets in the next level of hierarchy where k is called division factor. Therefore the size of tag fields associated to each set is variable and it depends on the hierarchy level of the set it is in. This scheme is proposed to achieve higher hit ratios with respect to the two conventional schemes namely set-associative and direct mapping. The proposed scheme has been simulated with several standard trace files SPEC 2000 and statistics are gathered and analyzed for different... 

    Synthesis and characterization of novel 2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane (2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazatetracyclo dodecane based nanopolymer-bonded explosives by microemulsion

    , Article Journal of Molecular Liquids ; Volume 206 , June , 2015 , Pages 190-194 ; 01677322 (ISSN) Bayat, Y ; Soleyman, R ; Zarandi, M ; Sharif University of Technology
    Elsevier  2015
    Abstract
    2,4,6,8,10,12-Hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane (2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazatetracyclo dodecane (CL-20)-based polymer/plastic bonded explosives are used in propellant formulation. It can be predicted that CL-20-based nano-polymer/plastic bonded explosives are able to have reduced composite sensitivity and superior mechanical strength. In the current study, we have prepared two kinds of CL-20-based nano-polymer/plastic bonded explosives with ethylene-vinyl acetate copolymer and glycidyl azide polymer via the microemulsion method. Several visual techniques such as SEM/AFM/TEM techniques have been utilized for complete characterization of CL-20-based... 

    Dependability evaluation of Altera FPGA-based embedded systems subjected to SEUs

    , Article Microelectronics Reliability ; Volume 47, Issue 2-3 , 2007 , Pages 461-470 ; 00262714 (ISSN) Zarandi, H. R ; Miremadi, S. G ; Sharif University of Technology
    2007
    Abstract
    Dependability evaluation of embedded systems due to the integration of hardware and software parts is difficult to analyze. In this paper, we have proposed an experimental method to determine sensitivity to soft errors in an embedded system exploiting Altera SRAM-based FPGAs. The evaluation is performed using both the hardware and software parts of the embedded system in a single framework. To do this, the HDL hardware model of the target system as well as the C-written software codes of the target system, are required. Both permanent and transient faults are injected into the partially- or fully-synthesizable hardware of the target system and this can be performed during the design cycle of... 

    A fault-tolerant cache architecture based on binary set partitioning

    , Article Microelectronics Reliability ; Volume 46, Issue 1 , 2006 , Pages 86-99 ; 00262714 (ISSN) Zarandi, H. R ; Miremadi, S. G ; Sharif University of Technology
    2006
    Abstract
    Caches, which are comprised much of a CPU chip area and transistor counts, are reasonable targets for transient single and multiple faults induced from energetic particles. This paper presents: (1) a new fault detection scheme for tag arrays of cache memories and (2) an architectural cache to improve performance as well as dependability. In this architecture, cache space is divided into sets of different sizes and different tag lengths. Using the proposed fault detection scheme, i.e., GParity, when single and multiple errors are detected in a word, the word is rewritten by its correct data from memory and its GParity code is recomputed. The error detection scheme and the cache architecture... 

    A SEU-protected cache memory-based on variable associativity of sets

    , Article Reliability Engineering and System Safety ; Volume 92, Issue 11 , 2007 , Pages 1584-1596 ; 09518320 (ISSN) Zarandi, H. R ; Miremadi, S. G ; Sharif University of Technology
    2007
    Abstract
    SRAM cache memories suffer from single event upset (SEU) faults induced by energetic particles such as neutron and alpha particles. To protect these caches, designers often use error detection and correction codes, which typically provide single-bit error detection and even correction. However, these codes have low error detection capability or incur significant performance penalties. In this paper, a protected cache scheme based on the variable associativity of sets is presented. In this scheme, cache space is divided into sets of different sizes with variable tag field lengths. The other remained bits of tags are used for protecting the tag using a new protection code. This leads to... 

    Hierarchical binary set partitioning in cache memories

    , Article Journal of Supercomputing ; Volume 31, Issue 2 , 2005 , Pages 185-202 ; 09208542 (ISSN) Zarandi, H. R ; Sarbazi Azad, H ; Sharif University of Technology
    2005
    Abstract
    In this paper, a new cache placement scheme is proposed to achieve higher hit ratios with respect to the two conventional schemes namely set-associative and direct mapping. Similar to set-associative, in this scheme, cache space is divided into sets of different sizes. Hence, the length of tag fields associated to each set is also variable and depends on the partition it is in. The proposed mapping function has been simulated with some standard trace files and statistics are gathered and analyzed for different cache configurations. The results reveal that the proposed scheme exhibits a higher hit ratio compared to the two well-known mapping schemes, namely set-associative and direct mapping,... 

    Soft error mitigation in cache memories of embedded systems by means of a protected scheme

    , Article 2nd Latin-American Symposium on Dependable Computing, LADC 2005, Salvador, 25 October 2005 through 28 October 2005 ; Volume 3747 LNCS , 2005 , Pages 121-130 ; 03029743 (ISSN); 3540295720 (ISBN); 9783540295723 (ISBN) Zarandi, H. R ; Miremadi, S. G ; Sharif University of Technology
    2005
    Abstract
    The size and speed of SRAM caches of embedded systems are increasing in response to demands for higher performance. However, the SRAM caches are vulnerable to soft errors originated from energetic nuclear particles or electrical sources. This paper proposes a new protected cache scheme, which provides high performance as well as high fault detection coverage. In this scheme, the cache space is divided into sets of different sizes. Here, the length of tag fields associated to each set is unique and is different from the other sets. The other remained bits of tags are used for protecting the tag using a fault detection scheme e.g., generalized parity. This leads to protect the cache without... 

    Fault tree analysis of embedded systems using SystemC

    , Article Annual Reliability and Maintainability Symposium, 2005 Proceedings: The International Symposium on Product Quality and Integrity, Alexandria, VA, 24 January 2005 through 27 January 2005 ; 2005 , Pages 77-81 ; 0149144X (ISSN) Zarandi, H. R ; Miremadi, S. G ; Sharif University of Technology
    2005
    Abstract
    System fault-tree analysis is a technique for modeling dependability that is in widespread use. For systems such as embedded systems that include both hardware and software, the integration of hardware and software fault trees has proved problematic. In this paper, we present a method for reliability and safety analysis of embedded systems modeled by SystemC language. The evaluation is based on the fault trees generated from both hardware and software parts of the embedded systems described in the unified language. The unified modeling of both hardware and software of embedded systems using SystemC enables designers to be early aware from the safety and reliability of their designs more... 

    A highly fault detectable cache architecture for dependable computing

    , Article Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics) ; Volume 3219 , 2004 , Pages 45-59 ; 03029743 (ISSN); 3540231765 (ISBN); 9783540231769 (ISBN) Zarandi, H. R ; Miremadi, S. G ; Sharif University of Technology
    Springer Verlag  2004
    Abstract
    Information integrity in cache memories is a fundamental requirement for dependable computing. As caches comprise much of a CPU chip area and transistor counts, they are reasonable targets for single and multiple transient faults. This paper presents: 1) a fault detection scheme for tag arrays of cache memories and 2) an architectural cache to improve dependability as well as performance. In this architecture, cache space is divided into sets of different sizes and different tag lengths. The error detection scheme and the cache architecture have been evaluated using a trace driven simulation with soft error injection and SPEC 2000 applications. The results show that error detection... 

    Weighted TINs Smplification and Design of Some Algorithms on it

    , M.Sc. Thesis Sharif University of Technology Dabaghi Zarandi, Fahimeh (Author) ; Ghodsi, Mohammad (Supervisor)
    Abstract
    Due to increasing quality of satellite images, volume of stored data significantly increased, so speed of statistical and computational processing decreased. For solving this problem, simplification
    problem has been suggested. Surface simplification problem is a fundamental problem in computational geometry and it has many applications in other fields such as GIS, computer graphics, and image processing. Major goal of simplification problems is reducing stored information in any surface, Because it improves speed of processes. One of common types in this field is 3D terrain simplification while error of simplified surface be acceptable. Simplification is NP-Hard problem. In this project,... 

    Experimental study on imbibition displacement mechanisms of two-phase fluid using micromodel: fracture network, distribution of pore size, and matrix construction

    , Article Physics of Fluids ; Volume 29, Issue 12 , 2017 ; 10706631 (ISSN) Jafari, I ; Masihi, M ; Nasiri Zarandi, M ; Sharif University of Technology
    2017
    Abstract
    In this study, the effect of different parameters on the fluid transport in a fractured micromodel has been investigated. All experiments in this study have been conducted in a glass micromodel. Since the state of wetting is important in the micromodel, the wetting experiments have been conducted to determine the state of wetting in the micromodel. The used micromodel was wet by water and non-wet regarding normal decane. The fracture network, distribution of pore size, matrix construction, and injection rate are the most important parameters affecting the process. Therefore, the influence of these parameters was studied using five different patterns (A to E). The obtained results from... 

    Scaling of counter-current imbibition recovery curves using artificial neural networks

    , Article Journal of Geophysics and Engineering ; Volume 15, Issue 3 , 2018 , Pages 1062-1070 ; 17422132 (ISSN) Jafari, I ; Masihi, M ; Nasiri Zarandi, M ; Sharif University of Technology
    Institute of Physics Publishing  2018
    Abstract
    Scaling imbibition curves are of great importance in the characterization and simulation of oil production from naturally fractured reservoirs. Different parameters such as matrix porosity and permeability, oil and water viscosities, matrix dimensions, and oil/water interfacial tensions have an effective on the imbibition process. Studies on the scaling imbibition curves along with the consideration of different assumptions have resulted in various scaling equations. In this work, using an artificial neural network (ANN) method, a novel technique is presented for scaling imbibition recovery curves, which can be used for scaling the experimental and field-scale imbibition cases. The... 

    On Comparison of Architecture-level Dependability Approaches for Multicore Processors in Mixed-critical Embedded Applications

    , M.Sc. Thesis Sharif University of Technology Dabaghi Zarandi, Arezoo (Author) ; Miremadi, Ghasem (Supervisor)
    Abstract
    Nowdays, embedded systems need high dependability and performance and low cost. Use of multicore processors cause increase performance, and can lead to increase dependability with its inherent redundancy. Also mixed critical leads to decrease cost and increase dependability, because designer just considers dependability techniques for high critical tasks. A lot of work to increase dependability of real-time multicore systems with mixed-criticality has been done. In this study, a comprehensive classification of the approaches that has been done in this area is provided. One of the issues that is expressed in muticore, is shared resources. In multicore platforms some resources like memory and... 

    Power-aware branch target prediction using a new BTB architecture

    , Article Proceedings - 17th IFIP International Conference on Very Large Scale Integration, VLSI-SoC 2009 ; 2011 , p. 53-58 ; ISBN: 9781457702365 Sadeghi, H ; Sarbazi-Azad, H ; Zarandi, H. R ; Sharif University of Technology
    2011
    Abstract
    This paper presents two effective methods to reduce power consumption of branch target buffer (BTB): 1) the first method is based on storing distance to next branch address in tag array instead of storing whole branch address, 2) the second method is to use a new field in data array of BTB namely Next Branch Distance (NBD) which holds distance of next branch address from current branch address. When a new hit is performed in BTB, based on NBD field, there would be no access through NBD number of instructions, so BTB can be shutdown not to consume power. The new architecture does not impose extra delay and reduction in prediction accuracy. Both methods were implemented and simulated using... 

    Power-aware branch target prediction using a new BTB architecture

    , Article Proceedings - 17th IFIP International Conference on Very Large Scale Integration, VLSI-SoC 2009, 12 October 2009 through 14 October 2009 ; October , 2011 , Pages 53-58 ; 9781457702365 (ISBN) Sadeghi, H ; Sarbazi Azad, H ; Zarandi, H. R ; Sharif University of Technology
    2011
    Abstract
    This paper presents two effective methods to reduce power consumption of branch target buffer (BTB): 1) the first method is based on storing distance to next branch address in tag array instead of storing whole branch address, 2) the second method is to use a new field in data array of BTB namely Next Branch Distance (NBD) which holds distance of next branch address from current branch address. When a new hit is performed in BTB, based on NBD field, there would be no access through NBD number of instructions, so BTB can be shutdown not to consume power. The new architecture does not impose extra delay and reduction in prediction accuracy. Both methods were implemented and simulated using... 

    Fault injection into verilog models for dependability evaluation of digital systems

    , Article Proceedings - 2nd International Symposium on Parallel and Distributed Computing, ISPDC 2003, 13 October 2003 through 14 October 2003 ; October , 2015 , Pages 281-287 ; 0769520693 (ISBN) ; 9780769520698 (ISBN) Zarandi, H. R ; Miremadi, S. G ; Ejlali, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    This paper presents transient and permanent fault injection into Verilog models of digital systems during the design phase by a developed simulation-based fault injection tool called INJECT. With this fault injection tool, it is possible to inject crucial fault models in all abstraction levels (such as swith-level) supported by Verilog HDL. Several fault models for injecting into Verilog models are specified and described. Analyzing the results obtained from the fault injections, using INJECT enables system designers to inform from dependable parameters, such as fault latency, propagation and coverage. As a case study, a 32-bit processor, namely DP32, has been evaluated and effects of faults...