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    Operational risk evaluation in competitive electricity market scheduling

    , Article 2006 International Conference on Power System Technology, POWERCON2006, Chongqing, 22 October 2006 through 26 October 2006 ; 2006 ; 1424401119 (ISBN); 9781424401116 (ISBN) Ehsani, A ; Ranjbar, A. M ; Fotuhi Firuzabad, M ; Samani, S. C ; Mozafari, B ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2006
    Abstract
    Electric power systems are typically operated at least cost subject to technical and reliability constraints. This paper presents a probabilistic approach for risk evaluation in competitive electricity market scheduling. A competitive structure is proposed which includes a purchasing agency with centrally optimized scheduling (MaxISO structure). Spinning and non-spinning reserves are considered in the proposed approach. The value of unit commitment risk is deduced from the generation model. The required generation model is constructed using the outage replacement rate (ORR) of units. The load forecast uncertainty is included in operational risk evaluation. This is due to the increased... 

    Femtocell base station clustering and logistic smooth transition autoregressive-based predicted signal-to-interference-plus-noise ratio for performance improvement of two-tier macro/femtocell networks

    , Article IET Signal Processing ; Volume 10, Issue 1 , 2016 , Pages 1-11 ; 17519675 (ISSN) Lotfollahzadeh, T ; Kabiri, S ; Kalbkhani, H ; Shayesteh, M. G ; Sharif University of Technology
    Institution of Engineering and Technology 
    Abstract
    The aim of this study is to improve the performance of two-tier macro/femtocell networks using a power control approach. In wireless networks, power control plays an important role in improving a number of performance parameters such as co-channel interference and outage probability reduction, throughput increasing, and power saving. This study explores the evolution of centralised power control algorithm based on femtocell base station (FBS) clustering and predicted signal-to-interference-plus-noise ratio (SINR) of users. To reduce the computational complexity of centralised algorithm, dense deployed femtocells are considered in different clusters. In this case, femtocells inside one... 

    Reliability Studies of Modern Distribution Systems Integrated With Renewable Generation and Parking Lots

    , Article IEEE Transactions on Sustainable Energy ; Volume PP, Issue 99 , 2016 ; 19493029 (ISSN) Farzin, H ; Fotuhi Firuzabad, M ; Moeini Aghtaie, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc 
    Abstract
    This paper investigates the role of parking lots in improving the reliability of renewable-based distribution systems, through provision of vehicle-to-grid (V2G) programs during outage events. In this regard, municipal parking decks are viewed as distributed energy storage systems and the amount of available energy from these units in random contingency events is probabilistically modeled for reliability studies. Appropriate stochastic models are also introduced to capture the volatility and intermittency of renewable sources. Moreover, it is discussed that how the adopted outage management scheme (OMS) in contingency events can affect the reliability level of customers. In response, several... 

    Reliability studies of modern distribution systems integrated with renewable generation and parking lots

    , Article IEEE Transactions on Sustainable Energy ; Volume 8, Issue 1 , 2017 , Pages 431-440 ; 19493029 (ISSN) Farzin, H ; Fotuhi Firuzabad, M ; Moeini Aghtaie, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2017
    Abstract
    This paper investigates the role of parking lots in improving the reliability of renewable-based distribution systems, through provision of vehicle-to-grid (V2G) programs during outage events. In this regard, municipal parking decks are viewed as distributed energy storage systems and the amount of available energy from these units in random contingency events is probabilistically modeled for reliability studies. Appropriate stochastic models are also introduced to capture the volatility and intermittency of renewable sources. Moreover, it is discussed that how the adopted outage management scheme (OMS) in contingency events can affect the reliability level of customers. In response, several... 

    Capacity-outage joint analysis and optimal power allocation for wireless body area networks

    , Article IEEE Systems Journal ; 2018 ; 19328184 (ISSN) Razavi, A ; Jahed, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    Wireless body area networks (WBANs) are characterized by short-range wireless communication between inherently resource-limited sensors that operate in the vicinity of the human body for recording certain physiological signals. One of the main limitations of WBANs is in terms of their available power. Since the nodes are typically battery-driven, an efficient power transmission is essential to guarantee long-lasting communications among nodes without the need for frequent battery replacement or charging. In this study, aiming to improve the WBAN performance, we first investigate the power allocation problem by choosing the ergodic capacity and the outage probability as the desired metrics.... 

    A new power allocation scheme for amplify and forward incremental relaying

    , Article 2009 IEEE 10th Workshop on Signal Processing Advances in Wireless Communications, SPAWC 2009, Perugia, 21 June 2009 through 24 June 2009 ; 2009 , Pages 494-498 ; 9781424436965 (ISBN) Tabataba, F. S ; Sadeghi, P ; Pakravan, M. R ; Sharif University of Technology
    2009
    Abstract
    In this paper, we present a novel power allocation scheme for amplify and forward incremental relaying (IR) systems with the aim to minimize the overall outage probability at the destination. In our problem formulation, we take into account the outage-dependent activation of the relay when writing the power constraint. We provide a simple closed-form solution to the IR power allocation problem that is based on high signal-to-noise (SNR) approximation of the outage probability assuming maximum ratio combining (MRC) at the destination. We investigate the effectiveness of the proposed solution by comparing the achieved outage probabilities with those obtained through global numerical search. We... 

    Unsupervised learning for distribution grid line outage and electricity theft identification

    , Article 2019 Smart Gird Conference, SGC 2019, 18 December 2019 through 19 December 2019 ; 2019 ; 9781728158945 (ISBN) Soleymani, M ; Safdarian, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    The development of smart meters enables situational awareness in electric power distribution systems. The situational awareness provides significant advantages such as line outage and electricity theft detection. This paper aims at using smart meter data to detect these anomalies. To do so, an appropriate cluster-based method as an unsupervised machine learning approach is applied. A stochastic method based on conditional correlation is also proposed to localize the anomalies. It is shown that this can be done by detecting changes in bus connections using present and historical smart meter data. Therefore, network topology inspection can be avoided if the proposed method is applied. A... 

    Evaluating reliability of SSD-Based I/O caches in enterprise storage systems

    , Article IEEE Transactions on Emerging Topics in Computing ; 2019 ; 21686750 (ISSN) Ahmadian, S ; Taheri, F ; Asadi, H ; Sharif University of Technology
    IEEE Computer Society  2019
    Abstract
    I/O caching techniques are widely employed in enterprise storage systems in order to enhance performance of I/O intensive applications in large-scale data centers. Due to higher performance compared to Hard Disk Drives (HDDs) and lower price and nonvolatility compared to Dynamic Random-Access Memories (DRAM), Flash-based Solid-State Drives (SSDs) are used as a main media in the caching layer of storage systems. Although SSDs are known as non-volatile devices but recent studies have reported large number of data failures due to power outage in SSDs. To overcome the reliability implications of SSD-based I/O caching schemes, RAID-1 (mirrored) configuration is commonly used to avoid data loss... 

    Capacity-outage joint analysis and optimal power allocation for wireless body area networks

    , Article IEEE Systems Journal ; Volume 13, Issue 1 , 2019 , Pages 635-646 ; 19328184 (ISSN) Razavi, A ; Jahed, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    Wireless body area networks (WBANs) are characterized by short-range wireless communication between inherently resource-limited sensors that operate in the vicinity of the human body for recording certain physiological signals. One of the main limitations of WBANs is in terms of their available power. Since the nodes are typically battery-driven, an efficient power transmission is essential to guarantee long-lasting communications among nodes without the need for frequent battery replacement or charging. In this study, aiming to improve the WBAN performance, we first investigate the power allocation problem by choosing the ergodic capacity and the outage probability as the desired metrics.... 

    Uncertainty consideration in power system reliability indices assessment using fuzzy logic method

    , Article 2007 Large Engineering Systems Conference on Power Engineering, LESCOPE'07, Montreal, QC, 10 October 2007 through 12 October 2007 ; January , 2007 , Pages 305-309 ; 9781424415830 (ISBN) Fotuhi, M ; Ghafouri, A ; Sharif University of Technology
    2007
    Abstract
    Reliability assessment of power systems is very vital particularly in the market-driven environment. As the power systems are nonlinear and large-scale systems, extracting their reliability indices involves much uncertainty. Calculation of power system reliability using stochastic methods is a complex and relatively difficult procedure. However, using fuzzy logic methods it would be possible to calculate the reliability in accordance with the existing uncertainties. In this paper, a new fuzzy logic based method is proposed to calculate the reliability indices of composite power systems. Then, the suggested method is examined on a sample network as a case study. © 2007 IEEE  

    Evaluating reliability of SSD-Based I/O caches in enterprise storage systems

    , Article IEEE Transactions on Emerging Topics in Computing ; Volume 9, Issue 4 , 2021 , Pages 1914-1929 ; 21686750 (ISSN) Ahmadian, S ; Taheri, F ; Asadi, H ; Sharif University of Technology
    IEEE Computer Society  2021
    Abstract
    I/O caching techniques are widely employed in enterprise storage systems in order to enhance performance of I/O intensive applications in large-scale data centers. Due to higher performance compared to Hard Disk Drives (HDDs) and lower price and non-volatility compared to Dynamic Random-Access Memories (DRAM), Flash-based Solid-State Drives (SSDs) are used as a main media in the caching layer of storage systems. Although SSDs are known as non-volatile devices but recent studies have reported large number of data failures due to power outage in SSDs. To overcome the reliability implications of SSD-based I/O caching schemes, RAID-1 (mirrored) configuration is commonly used to avoid data loss... 

    Evaluating reliability of SSD-Based I/O caches in enterprise storage systems

    , Article IEEE Transactions on Emerging Topics in Computing ; Volume 9, Issue 4 , 2021 , Pages 1914-1929 ; 21686750 (ISSN) Ahmadian, S ; Taheri, F ; Asadi, H ; Sharif University of Technology
    IEEE Computer Society  2021
    Abstract
    I/O caching techniques are widely employed in enterprise storage systems in order to enhance performance of I/O intensive applications in large-scale data centers. Due to higher performance compared to Hard Disk Drives (HDDs) and lower price and non-volatility compared to Dynamic Random-Access Memories (DRAM), Flash-based Solid-State Drives (SSDs) are used as a main media in the caching layer of storage systems. Although SSDs are known as non-volatile devices but recent studies have reported large number of data failures due to power outage in SSDs. To overcome the reliability implications of SSD-based I/O caching schemes, RAID-1 (mirrored) configuration is commonly used to avoid data loss... 

    Cooperative Communications Based on Jointly Network Coding and Rateless Coding Approach and Their Analysis

    , M.Sc. Thesis Sharif University of Technology Mansourifard, Parisa (Author) ; Nasiri Kenari, Masoumeh (Supervisor)
    Abstract
    In recent years, coded cooperation has been considered as one of the best methods to cope with fading and at the same time to achieve channel coding gain. On the other hand, the idea of network coding has been introduced for increasing the efficiency of cooperative networks. In addition, it has been shown that only by jointly designing of network coding and channel coding, the capacity will be achievable. Also, to adjust the rate to the channel capacity without requiring the channel state information at the transmitter, Rateless coding has been proposed. In this thesis above techniques are combined to gain their advantages and to improve system performance. To this end, first we consider a... 

    Performance Analysis of Ultra-Wide Band (UWB) Communication with a Relay Node

    , Ph.D. Dissertation Sharif University of Technology Zeinalpour Yazdi, Zolfa (Author) ; Nasiri Kenari, Masoumeh (Supervisor) ; Azhang, Behnaam (Supervisor)
    Abstract
    In recent years, there has been an increased interest on employing low-cost, high-speed, low-latency wireless links for short range communications (< 10m). Ultra-wideband (UWB) radio is a promising technology to meet this interest. However, due to the limitation on its transmitted power level, UWB system faces major challenges to achieve an adequate system performance. Therefore, it is greatly necessary to find some efficient methods to enhance the system performance. Recently, cooperative diversity has emerged as an effective scheme to overcome multipath fading and thus to improve the quality of service in the physical layer of wireless networks without increasing the transmission power of... 

    UEP CodesBased Cooperative Network With Different User Priorities Approach and Their Analysis

    , M.Sc. Thesis Sharif University of Technology Mohammadkhani Razlighi, Mohsen (Author) ; Nasiri-kenari, Masoumeh (Supervisor) ; Behroozi, Hamid (Supervisor)
    Abstract
    In recent years, coded cooperation has been considered as one of the best methods to cope with fading and at the same time to achieve channel coding gain. There is a special case of cooperative networks that provide different level of user priority. Among all methods for creating user priority our motivation is to use of UEP codes for this propose. UEP codes are a special case of channel codes that provide different level of protection for message. It means that some part of message that has more protection it has less error. First we review all type of UEP codes and compare them in term of probability of bit error on the AWGN channel. And best code will be choosing for applying to this... 

    Evaluating Reliability of SSDs Against Power Outage

    , M.Sc. Thesis Sharif University of Technology (Author) ; Asadi, Hossein (Supervisor)
    Abstract
    Solid-State Drives (SSDs) provide high performance, low power consumption, and hence are widely used in the I/O cache of enterprise storage systems and high performance servers. Although employing high performance SSDs in the I/O cache of storage systems significantly improves system performance, it comes with significant reliability threats for write operations upon power failures. In order to provide high level of reliability, storage architectures employ SSDs in I/O cache with RAID-1 configuration, however, such configuration only partially mitigates the reliability issues of the SSDs. In this thesis, we analyze the reliability of SSD-based I/O caches against power outage and high... 

    Channel Modeling and Assessment of Key Performance Indicators for Wireless Body Area Networks

    , Ph.D. Dissertation Sharif University of Technology Razavi, Ali (Author) ; Jahed, Mehran (Supervisor)
    Abstract
    Wireless Body Area Network (WBAN) is one of the emerging technological trends that paves the way for the next generation medical systems by offering proactive wellness management and early detection of diseases. WBAN, as standardized by IEEE 802.15.6, is a network composed of intelligent, miniaturized, low power sensors that are strategically implanted in, placed on, or in close proximity to the human body. The sensors have responsibility for recording vital physiological signals and wirelessly transmitting them to a central hub for further processing. In this study, we have first investigated the applicable channel models for a typical WBAN. Considering various scenarios with different... 

    Non-orthogonal Multiple Access Techniques with Simultanious Wireless Information and Energy Transfer

    , M.Sc. Thesis Sharif University of Technology Eslami Manoochehri, Farzad (Author) ; MirMohseni, Mahtab (Supervisor) ; Nasiri Kenari, Masumeh (Supervisor)
    Abstract
    Non-Orthogonal multiple access (NOMA) has been considered as a promising multiple access technique for the 5th generation (5G) of wireless networks. In contrast to orthogonal multiple access, NOMA supports more than one user in each subchannel and thus, improve spectral efficiency. On the other hand, energy efficiency which is another key consideration in future 5G networks, can be improved by energy harvesting (EH) methods. In the NOMA scheme, the user with the better channel condition performs successive interference cancellation (SIC) to detect the data of the user with the worse channel condition and then subtract it from the received signal to decode its own data. Since the data of the... 

    Physical Layer Security in Wireless Communication Networks in Presence of Intelligent Reflecting Surfaces

    , M.Sc. Thesis Sharif University of Technology Pourkarimi, Ali (Author) ; Nasiri Kenari, Masoumeh (Supervisor) ; Mirmohseni, Mahtab (Co-Supervisor)
    Abstract
    The ever-increasing demand for wireless communication has raised the need for better utilization of bandwidth and energy. Intelligent Reflecting Surface (IRS) is an emerging technology that has been proposed for the sixth generation of wireless communication. In this thesis, we study the essential role these surfaces can play in improving the physical layer security.First, we consider a relatively realistic scenario for the location of the eavesdroppers. In this scenario, we will assume that the transmitters, users, and eavesdroppers all use a single antenna configuration, and the eavesdroppers are placed randomly across the studied region. Two notable parameters in physical layer security,... 

    Monitoring the Received Signal Level, the Rain Attenuation and Received Solar Noise During The Conjunction at Tehran Station for the Main TV Direct Broadcast Satellites during a Solar Year

    , M.Sc. Thesis Sharif University of Technology Khajehpour, Vahid (Author) ; Farzaneh, Forouhar (Supervisor)
    Abstract
    Due to the widespread use of satellite communications including live TV broadcast, DVB-S and satellite Internet, it is necessary to accurately assess the level of signal received and the EIRP of the satellite. Nilesat21(7°W), Eutelsat3B(3°E), Badr(26°E), Express AM6(53°E) and Intelsat20(68.5°E) have been chosen to be meticulously assessed and analyzed.The chosen satellites contain the westernmost for Tehran to the easternmost, which has been listed above from west to east, respectively.In addition, the signal attenuation is closely monitored in the city of Tehran during rainfall for the above-mentioned satellites. In the meantime, the rain rate is also recorded.Another major factor that...