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Warranty servicing for special class of multi-state deteriorating products under renewing free-replacement warranty
, Article 40th International Conference on Computers and Industrial Engineering: Soft Computing Techniques for Advanced Manufacturing and Service Systems, CIE40 2010, 25 July 2010 through 28 July 2010 ; 2010 ; 9781424472956 (ISBN) ; Mahlooji, H ; Eshraghnia Jahromi, A ; Sharif University of Technology
2010
Abstract
We develop a replacement-repair model to study a renewing free replacement warranty (RFRW) for a class of multi-state deteriorating repairable products. Each product may experience N different working states with different hazard functions, before the warranty contract expires. Once the item enters working state j(j = 1, 2, . . . , N), it can either fail or move t any of the subsequent states. In the former case, the best rectification action, replacement or minimal repair, regarding the failure status, should be done to put the item into operation. In each working state there is a determined probability for transition to each of the subsequent working states. After a replacement the product...
Replacement-repair policy based on a simulation model for multi-state deteriorating products under warranty
, Article Scientia Iranica ; Volume 16, Issue 1 E , 2009 , Pages 26-35 ; 10263098 (ISSN) ; Vahdani, H ; Sharif University of Technology
2009
Abstract
In this paper, a replacement-repair model is developed to study a warranty servicing policy for a class of multi-state deteriorating and repairable products, based on a computer simulation analysis. In each working state there is a determined probability for transition to each of the subsequent states, given that it has made a transition out of that state. There are two parameters that determine the manufacturer's decision to repair or replace a failed item, assuming that the buyer's claim is valid; the deterioration degree of the item and the length of the residual warranty period. Beside these two parameters, other inputs to the model are: the number of working and failure states, the...
A New Model in Order to Determine Maintenance Strategy for Series-parallel Systems
, M.Sc. Thesis Sharif University of Technology ; Eshraghnia Jahromi, Abdolhamid (Supervisor)
Abstract
Reliability in today's world plays a pivotal role. As technology makes progress in various industries such as aviation and defense, the need for high reliability of systems is felt more and more. In this regard, reliability is directly related to the lives of people, and its high level can play a significant role in the profitability of organizations. Selective Maintenance, as one of the research areas in the field of reliability optimization, strives to enhance the reliability of the system and minimize the costs of the system by finding optimal maintenance policy. In the models that have been presented to optimize the selective maintenance policy, the assumption that the repair cost of...
Reliability Analysis of Tehran Bus Rapid Transit Line 1 and Presentation of Preventive Maintenance for Reduction of Failures
, M.Sc. Thesis Sharif University of Technology ; Eshraghnia Jahromi, Abdolhamid (Supervisor)
Abstract
Reliability and availability are one of the sensitive and significant points in each maintenance system. Due to the nature of bus system failures, that almost consist of large percentage of possibility risk factors is the systems maintenance, in this study for implementing our proposed model, the bus rapid transit garage-line1 were selected. This model is to provide solutions in strategic and operational levels in the network's garage in several sessions. The solutions include decisions about the capacity of human resources in the workshop system, determine the communication policies with suppliers of spare parts and human resources training policies by the standard scoring system, the...
Reliabilty Optimization of a Nonrepairable k out of n System with Composition of Warm and Cold Standby Components and Consideration of Switching
, M.Sc. Thesis Sharif University of Technology ; Eshraghnia Jahromi, Abdolhamid (Supervisor)
Abstract
Due to reliability importance in military and industrial sectors, increasing of reliability is inevitable. One of the most important ways to increase the reliability of a system is to use cold and warm standby components. In this thesis, the analysed system is a nonrepairable k out of n system consist of hot, warm and cold components. Considering the importance of switch operation in this system the imapcts of switches on the overall system reliability has been analysed. The behavior of components and switches oby exponential distribution. The hazard rate for hot, warm and cold components is shown respectively by, and. Also the hazard rate of switch for cold to warm is shown by and for...
Identifying and Ranking Supply Chain Risk Factors and Calculating Reliability in 3 Level Supply Chain
, M.Sc. Thesis Sharif University of Technology ; Eshraghnia Jahromi, Abdolhamid (Supervisor)
Abstract
Since 1990, supply chains get affected by business environment changes and become more vulnerable. Changes such as globalization, decrease of inventory levels, out sourcing, etc. in this thesis after reviewing some paper, researches are categorized in 8 group. Then 30 risk factor identified from this papers. Because of basic differences in industries and different importance of risk factors in them, a case was studied in one industrial area and risk factors was evaluated in a two-step evaluation. Eventually some advices presented for increasing reliability for that case
Availability optimization of a series system with multiple repairable load sharing subsystems considering redundancy and repair facility allocation
, Article International Journal of Systems Assurance Engineering and Management ; Volume 4, Issue 3 , September , 2013 , Pages 262-274 ; 09756809 (ISSN) ; Eshraghniaye Jahromi, A ; Sharif University of Technology
2013
Abstract
Redundancy technique is considered as a way to enhance the reliability and availability of a system. This paper models availability of a repairable system with multiple subsystems in which the involved components follow the load sharing strategy. In redundancy allocation problems, the redundancy level is just considered, whereas, in this paper, the number of repair facility (repairman) is added to the decision variables. The goal is to find the optimal number of repairmen and redundant components in each subsystem for optimization of availability subject to weight, cost and volume constraints. The main contribution of this study is to present a straightforward model for availability...
A novel voltage-to-voltage logarithmic converter with high accuracy
, Article Przeglad Elektrotechniczny ; Volume 87, Issue 4 , 2011 , Pages 150-153 ; 00332097 (ISSN) ; Abrishamifar, A ; Medi, A ; Sharif University of Technology
2011
Abstract
A novel BiCMOS voltage-to-voltage converter with logarithmic characteristics and very high accuracy is presented. The relationship between the emitter current and the base-emitter voltage in bipolar transistors is used to realize the logarithmic function. With 1.8 supply voltage, the total power consumption is less than 15.75 mW and a Log error of < -36dB is shown in the ADS simulations. Compared to the other method in the literature, very better accuracy in logarithm calculation is achieved. The proposed method can be used in arithmetical operation circuits like analog processors
Semi active vibration control of a passenger car using magnetorheological shock absorber
, Article ASME 2010 10th Biennial Conference on Engineering Systems Design and Analysis, ESDA2010, Istanbul, 12 July 2010 through 14 July 2010 ; Volume 3 , 2010 , Pages 21-27 ; 9780791849170 (ISBN) ; Zabihollah, A ; Sharif University of Technology
2010
Abstract
A novel semi-active control system for suspension systems of passenger car using Magnetorheological (MR) damper is introduced. The suspension system is considered as a mass-spring model with an eight-degrees-of-freedom, a passive damper and an active damper. The semi-active vibration control is designed to reduce the amplitude of automotive vibration caused by the alteration of road profile. The control mechanism is designed based on the optimal control algorithm, Linear Quadratic Regulator (LQR). In this system, the damping coefficient of the shock absorber changes actively trough inducing magnetic field. It is observed that utilizing the present control algorithm may significantly reduce...
Full characterization of a spin liquid phase: From topological entropy to robustness and braid statistics
, Article Journal of Physics A: Mathematical and Theoretical ; Volume 50, Issue 14 , 2017 ; 17518113 (ISSN) ; Langari, A ; Sharif University of Technology
Institute of Physics Publishing
2017
Abstract
We use the topological entanglement entropy (TEE) as an efficient tool to fully characterize the Abelian phase of a Z2 ×Z2 spin liquid emerging as the ground state of topological color code (TCC), which is a class of stabilizer states on the honeycomb lattice. We provide the fusion rules of the quasiparticle (QP) excitations of the model by introducing single- or two-body operators on physical spins for each fusion process which justify the corresponding fusion outcome. Besides this, we extract the TEE from Renyi entanglement entropy (EE) of the TCC, analytically and numerically by finite size exact diagonalization on the disk shape regions with contractible boundaries. We obtain that the EE...
A new model for reliability optimization of series-parallel systems with non-homogeneous components
, Article Reliability Engineering and System Safety ; Volume 157 , 2017 , Pages 101-112 ; 09518320 (ISSN) ; Eshraghniaye Jahromi, A ; Sharif University of Technology
Elsevier Ltd
2017
Abstract
In discussions related to reliability optimization using redundancy allocation, one of the structures that has attracted the attention of many researchers, is series-parallel structure. In models previously presented for reliability optimization of series-parallel systems, there is a restricting assumption based on which all components of a subsystem must be homogeneous. This constraint limits system designers in selecting components and prevents achieving higher levels of reliability. In this paper, a new model is proposed for reliability optimization of series-parallel systems, which makes possible the use of non-homogeneous components in each subsystem. As a result of this flexibility,...
An analog optimal waveform design for UWB communications
, Article Proceedings of the 2nd Asia Symposium on Quality Electronic Design, ASQED 2010, 3 August 2010 through 4 August 2010 ; August , 2010 , Pages 289-293 ; 9781424478088 (ISBN) ; Abrishamifar, A ; Medi, A ; Akbarzadeh, A ; Sharif University of Technology
2010
Abstract
A new optimal waveform for Ultra-wideband (UWB) radios is proposed in this paper. This new waveform extracted through mathematical analysis for achieving high spectral utilization under the restrictions imposed by the U.S. Federal Communications Commission (FCC) spectral masks. Exploiting Inverse Fourier Transform (IFT) of FCC mask, the required analog signals are extracted through robust calculation and the optimum realizable analog signal for FCC mask is constructed while the simulations confirmed the analytical approach. Normalized effective signal power (NESP) of the proposed method is 95.27% which shows better efficiency compared to the other methods in the literature
Optimal topological design of power communication networks using genetic algorithm
, Article Scientia Iranica ; Volume 20, Issue 3 , 2013 , Pages 945-956 ; 10263098 (ISSN) ; Rad, Z. B ; Sharif University of Technology
2013
Abstract
An electric power supply is the backbone of development in advanced as well as in developing economies. An integral part of ensuring a secure power supply system is a power communication system. Due to the high and sustained performance requirements of power communication systems, electric companies prefer to construct their own communication networks privately rather than relying solely on a public communication system. The focus of this paper is on the optimal topological design of a power communication network. Based on advanced optimization models in public communication networks, and taking into account the specific Quality of Service, as demanded by various applications, such as...
DFT study of the interaction of thymine with Cu+ and Zn 2+
, Article Scientia Iranica ; Volume 16, Issue 2 C , 2009 , Pages 75-80 ; 10263098 (ISSN) ; Fattahi, A ; Sharif University of Technology
2009
Abstract
Interaction of the DNA thymine base with Cu+ and Zn3+ was studied to explore: a) The metal binding energy (MIA) of thymine with Cu+ and Zn2+ and b) The possible correlation between charge transfer and MIAs. The gas-phase Cu+ and Zn2+ affinities of thymine, as well as the Mulliken charges, on the complexed metal cations were both determined at the same computational level, including the density functional level and employing the hybrid B3LYP exchange correlation potential in connection with the 6-311++G (d,p) basis set. All the molecular complexes were obtained by interaction between the most stable tautomer of thymine and two transition mono and divalent (Cu+, Zn2+) metal ions. To probe all...
A fuzzy logic based approach to determine system well-being indices
, Article European Transactions on Electrical Power ; Volume 18, Issue 6 , 2008 , Pages 636-654 ; 1430144X (ISSN) ; Abiri Jahromi, A ; Sharif University of Technology
2008
Abstract
A new approach is presented in this paper to determine the degree of system well-being in the form of healthy, marginal and at risk state indices using the fuzzy logic concepts. Conventional well-being method uses a crisp deterministic criterion to divide power system comfort zone into the healthy and marginal states. In this regard, the main drawback is associated with categorising the system performance in the comfort zone into the healthy and marginal states. To overcome this problem, a new approach is developed that categorises the states as healthy or marginal using fuzzy logic. The technique together with the effects on the system risk and the system health and margin probabilities of...
Linear quadratic Gaussian application and clipped optimal algorithm using for semi active vibration of passenger car
, Article 2011 IEEE International Conference on Mechatronics, ICM 2011, Istanbul, 13 April 2011 through 15 April 2011 ; 2011 , Pages 122-127 ; 9781612849836 (ISBN) ; Sarrafan, A ; Jahromi, A. F ; Khayyat, A. A ; Sharif University of Technology
2011
Abstract
A novel semi active control system for eleven Degrees of Freedom passenger car's suspension system using Magneto rheological damper is presented. The considered suspension system is modeled using mass spring damper model. The semi active vibration control is designed to reduce the amplitude of vehicle's vibration due to by road profile. The applied control strategies are based on a Linear Quadratic Gaussian optimal control algorithm to obtain desired damping forces of MR dampers. In considered system, the damping coefficient of the shock absorber changes actively through inducing magnetic field. The necessary input voltage to MR dampers to generate desired damping forces are derived using...
Application of a novel acrylamide copolymer containing highly hydrophobic comonomer as filtration control and rheology modifier additive in water-based drilling mud
, Article Journal of Petroleum Science and Engineering ; Volume 180 , 2019 , Pages 747-755 ; 09204105 (ISSN) ; Ramazani S.A, A ; Soleimanian, A ; Fellah Jahromi, A ; Sharif University of Technology
Elsevier B.V
2019
Abstract
Deep wells suffer from the instability and disintegration of natural polymers and other commonly used additives under high pressure and high temperature condition. As a result, serious problems such as hydraulic loss, stuck pipe, and high torque and drag are expected to take place which leads to a dramatic increase in cost and time. This study presents the functionality of a novel synthetic based acrylamide-styrene copolymer (SBASC) as a supersede additive for water-based drilling mud. First, the SBASC was synthesized using an emulsion polymerization process and its particle morphological and polymer chain structural properties were determined by Field Emission Scanning Electron Microscopy...
Warranty servicing for discretely degrading items with non-zero repair time under renewing warranty
, Article Computers and Industrial Engineering ; Volume 65, Issue 1 , 2013 , Pages 176-185 ; 03608352 (ISSN) ; Mahlooji, H ; Jahromi, A. E ; Sharif University of Technology
2013
Abstract
This paper considers a repair-replacement strategy for a special class of discretely degrading and repairable products under renewing free replacement warranty. Each product may experience N different working states with different exponential hazard functions, before the warranty contract expires. Once the item enters working state i (i = 1,2, ⋯ ,N), it can either fail or move to any of the subsequent working states with different probabilities, given that a transition has been made. In the former case, the best rectification action, replacement or minimal repair, regarding the failure status, i.e., the product degradation level at the failure time and the remaining warranty time, should be...
A hybrid mesh-tree peer-to-peer overlay structure for layered video streaming
, Article 2010 5th International Symposium on Telecommunications, IST 2010, 4 December 2010 through 6 December 2010, Tehran ; 2010 , Pages 706-709 ; 9781424481835 (ISBN) ; Akbari, B ; Movaghar, A ; Sharif University of Technology
2010
Abstract
Due to complicated implementation of IP multicast, application layer multicast has attracted the attention of researchers. Tree overlay has some challenges such as resiliency problems caused by peer churns and also network resources may not be efficiently used. Mesh overlay doesn't have such problems, but has a high delivery latency and overhead caused by pull mechanism. Using a hybrid mesh/tree overlay offers push pull approach and leads to use the advantages of both overlays simultaneously. Also in p2p networks a significant problem is heterogeneity of peers. In this paper we propose a hybrid mesh/tree overlay that by means of streaming layered coded video, addresses these challenges. This...
Longitudinal legendre polynomial expansion of electromagnetic fields for analysis of arbitrary-shaped gratings
, Article Journal of the Optical Society of America A: Optics and Image Science, and Vision ; Volume 25, Issue 7 , 2008 , Pages 1564-1573 ; 10847529 (ISSN) ; Kazemi Jahromi, A ; Mehrany, K ; Sharif University of Technology
OSA - The Optical Society
2008
Abstract
The Legendre polynomial expansion method (LPEM), which has been successfully applied to homogenous and longitudinally inhomogeneous gratings [J. Opt. Soc. Am. B 24, 2676 (2007)], is now generalized for the efficient analysis of arbitrary-shaped surface relief gratings. The modulated region is cut into a few sufficiently thin arbitrary-shaped subgratings of equal spatial period, where electromagnetic field dependence is now smooth enough to be approximated by keeping fewer Legendre basis functions. The R-matrix propagation algorithm is then employed to match the Legendre polynomial expansions of the transverse electric and magnetic fields across the upper and lower interfaces of every slice....