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    A comprehensive survey of convolutions in deep learning: applications, challenges, and future trends

    , Article IEEE Access ; Volume 12 , 2024 , Pages 41180-41218 ; 21693536 (ISSN) Younesi, A ; Ansari, M ; Fazli, M ; Ejlali, A ; Shafique, M ; Henkel, J ; Sharif University of Technology
    2024
    Abstract
    In today's digital age, Convolutional Neural Networks (CNNs), a subset of Deep Learning (DL), are widely used for various computer vision tasks such as image classification, object detection, and image segmentation. There are numerous types of CNNs designed to meet specific needs and requirements, including 1D, 2D, and 3D CNNs, as well as dilated, grouped, attention, depthwise convolutions, and NAS, among others. Each type of CNN has its unique structure and characteristics, making it suitable for specific tasks. It's crucial to gain a thorough understanding and perform a comparative analysis of these different CNN types to understand their strengths and weaknesses. Furthermore, studying the... 

    Logarithmic correlators or responses in non-relativistic analogues of conformal invariance

    , Article Journal of Physics A: Mathematical and Theoretical ; Volume 46, Issue 49 , 2013 ; ISSN: 17518113 Henkel, M ; Rouhani, S ; Sharif University of Technology
    2013
    Abstract
    Recent developments on the emergence of logarithmic terms in correlators, or response functions of models which exhibit dynamical symmetries analogous to conformal invariance in not necessarily relativistic systems, are reviewed. The main examples of these are logarithmic Schrödinger invariance and logarithmic conformal Galilean invariance. Some applications of these ideas to statistical physics are described  

    Two-state checkpointing for energy-efficient fault tolerance in hard real-time systems

    , Article IEEE Transactions on Very Large Scale Integration (VLSI) Systems ; Volume 24, Issue 7 , 2016 , Pages 2426-2437 ; 10638210 (ISSN) Salehi, M ; Khavari Tavana, M ; Rehman, S ; Shafique, M ; Ejlali, A ; Henkel, J ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2016
    Abstract
    Checkpointing with rollback recovery is a well-established technique to tolerate transient faults. However, it incurs significant time and energy overheads, which go wasted in fault-free execution states and may not even be feasible in hard real-time systems. This paper presents a low-overhead two-state checkpointing (TsCp) scheme for fault-tolerant hard real-time systems. It differentiates between the fault-free and faulty execution states and leverages two types of checkpoint intervals for these two different states. The first type is nonuniform intervals that are used while no fault has occurred. These intervals are determined based on postponing checkpoint insertions in fault-free... 

    ReLIEF: A reinforcement-learning-based real-time task assignment strategy in emerging fault-tolerant fog computing

    , Article IEEE Internet of Things Journal ; Volume 10, Issue 12 , 2023 , Pages 10752-10763 ; 23274662 (ISSN) Siyadatzadeh, R ; Mehrafrooz, F ; Ansari, M ; Safaei, B ; Shafique, M ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2023
    Abstract
    Due to the real-time requirements in several IoT applications, fog computing has emerged to overcome the long latency and other constraints of cloud computing. Due to the high probability of packet loss, energy limitation of IoT devices, and the external disturbances that may frequently occur on the fog infrastructure, the timing constraints of real-time tasks may be compromised. Therefore, the reliability of executing real-time tasks has always been a significant challenge in fog computing. In addition to the correct execution of the tasks, it is also important to execute them before their deadlines according to their real-time classification. State-of-the-art methods generally focus on the... 

    Logarithmic exotic conformal Galilean algebras

    , Article Nuclear Physics B ; Vol. 879, issue. 1 , 2014 , pp. 292-317 ; ISSN: 05503213 Henkel, M ; Hosseiny, A ; Rouhani, S ; Sharif University of Technology
    2014
    Abstract
    Logarithmic representations of the conformal Galilean algebra (CGA) and the Exotic Conformal Galilean algebra (ecga) are constructed. This can be achieved by non-decomposable representations of the scaling dimensions or the rapidity indices, specific to conformal Galilean algebras. Logarithmic representations of the non-exotic CGA lead to the expected constraints on scaling dimensions and rapidities and also on the logarithmic contributions in the co-variant two-point functions. On the other hand, the ecga admits several distinct situations which are distinguished by different sets of constraints and distinct scaling forms of the two-point functions. Two distinct realisations for the spatial... 

    DRVS: Power-efficient reliability management through Dynamic Redundancy and Voltage Scaling under variations

    , Article 20th IEEE/ACM International Symposium on Low Power Electronics and Design, ISLPED 2015, 22 July 2015 through 24 July 2015 ; Volume 2015 , September , 2015 , Pages 225-230 ; 15334678 (ISSN) ; 9781467380096 (ISBN) Salehi, M ; Tavana, M. K ; Rehman, S ; Kriebel, F ; Shafique, M ; Ejlali, A ; Henkel, J ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    Many-core processors facilitate coarse-grained reliability by exploiting available cores for redundant multithreading. However, ensuring high reliability with reduced power consumption necessitates joint considerations of variations in vulnerability, performance and power properties of software as well as the underlying hardware. In this paper, we propose a power-efficient reliability management system for many-core processors. It exploits various basic redundancy techniques (like, dual and triple modular redundancy) operating in different voltage-frequency levels, each offering distinct reliability, performance and power properties. Our system performs Dynamic Redundancy and Voltage Scaling... 

    TherMa-MiCs: Thermal-Aware scheduling for fault-tolerant mixed-criticality systems

    , Article IEEE Transactions on Parallel and Distributed Systems ; Volume 33, Issue 7 , 2022 , Pages 1678-1694 ; 10459219 (ISSN) Safari, S ; Khdr, H ; Gohari Nazari, P ; Ansari, M ; Hessabi, S ; Henkel, J ; Sharif University of Technology
    IEEE Computer Society  2022
    Abstract
    Multicore platforms are becoming the dominant trend in designing Mixed-Criticality Systems (MCSs), which integrate applications of different levels of criticality into the same platform. A well-known MCS is the dual-criticality system that is composed of low-criticality and high-criticality tasks. The availability of multiple cores on a single chip provides opportunities to employ fault-Tolerant techniques, such as N-Modular Redundancy (NMR), to ensure the reliability of MCSs. However, applying fault-Tolerant techniques will increase the power consumption on the chip, and thereby on-chip temperatures might increase beyond safe limits. To prevent thermal emergencies, urgent countermeasures,... 

    FUSION: a fuzzy-Based multi-objective task management for fog networks

    , Article IEEE Access ; Volume 12 , 2024 , Pages 152886-152907 ; 21693536 (ISSN) Motamed Hashemi, A ; Safaei, B ; Hosseini Monazzah, A. M ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    IEEE  2024
    Abstract
    While the Guarantee Ratio (GR) is critically important in delay-sensitive fog applications, the existing deadline-aware task assignment strategies prioritize the balance of utilization over this criterion. Therefore, this paper introduces FUSION: a fuzzy-based task management policy, which provides a high GR with the least possible makespan. FUSION considers the effect of propagation, uplink/downlink delays, and also the bandwidth between the layers on the tasks' completion time during offloading. It benefits from a fuzzy offloader, along with a VM-ranking strategy based on a fuzzy quantified proposition. Hence, it uses two simple and efficient fuzzy ranking approaches, i.e., Decomposition... 

    A cluster-based and drop-aware extension of RPL to provide reliability in IOT applications

    , Article 15th Annual IEEE International Systems Conference, SysCon 2021, 15 April 2021 through 15 May 2021 ; 2021 ; 9781665444392 (ISBN) Shirbeigi, M ; Safaei, B ; Mohammadsalehi, A ; Monazzah, A. M. H ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2021
    Abstract
    The standardized IPv6 Routing Protocol for Low-power and Lossy Networks (RPL) has enabled efficient communications between thousands of smart devices, sensors, and actuators in a bi-directional, and end-to-end manner, allowing the connection of resource constraint devices in multi-hop IoT infrastructures. RPL is designed to cope with the major challenges of Low-power and Lossy Networks (LLNs), specifically their energy-efficiency. However, RPL is facing with severe congestion and load balancing problems, leading to a low Packet Delivery Ratio (PDR) in the network. For the first time since the declaration of RPL, in this paper we explain that ignoring the specifications of the reception and... 

    ARMOR: A reliable and mobility-aware RPL for mobile internet of things infrastructures

    , Article IEEE Internet of Things Journal ; Volume 9, Issue 2 , 2022 , Pages 1503-1516 ; 23274662 (ISSN) Mohammadsalehi, A ; Safaei, B ; Monazzah, A. M. H ; Bauer, L ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2022
    Abstract
    Mobile portable embedded devices are becoming an integral part of our daily activities in the vision of Internet of Things (IoT). Nevertheless, due to lack of mobility support in the IPv6 routing protocol for low-power and lossy networks (RPLs), which is standardized for multihop IoT infrastructures, providing reliable communications in terms of packet delivery ratio (PDR) in mobile IoT applications has become significantly challenging. While several studies tried to enhance the adaptability of RPL to network dynamics, their utilized routing metrics have prevented them from establishing long-lasting reliable paths. Furthermore, the stochastic parent replacement policy in the standard version... 

    DsReliM: Power-constrained reliability management in Dark-Silicon many-core chips under process variations

    , Article International Conference on Hardware/Software Codesign and System Synthesis, CODES+ISSS 2015, 4 October 2015 through 9 October 2015 ; Oct , 2015 , Pages 75-82 ; 9781467383219 (ISBN) Salehi, M ; Shafique, M ; Kriebel, F ; Rehman, S ; Tavana, M. K ; Ejlali, A ; Henkel, J ; ACM; IEEE ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    Due to the tight power envelope, in the future technology nodes it is envisaged that not all cores in a many-core chip can be simultaneously powered-on (at full performance level). The power-gated cores are referred to as Dark Silicon. At the same time, growing reliability issues due to process variations and soft errors challenge the cost-effective deployment of future technology nodes. This paper presents a reliability management system for Dark Silicon chips (dsReliM) that optimizes for reliability of on-chip systems while jointly accounting for soft errors, process variations and the thermal design power (TDP) constraint. Towards the TDP-constrained reliability optimization, dsReliM... 

    Reliability-aware design to suppress aging

    , Article 53rd Annual ACM IEEE Design Automation Conference, DAC 2016, 5 June 2016 through 9 June 2016 ; Volume 05-09 , June-2016 , 2016 ; 0738100X (ISSN); 9781450342360 (ISBN) Amrouch, H ; Khaleghi, B ; Gerstlauerz, A ; Henkel, J ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2016
    Abstract
    Due to aging, circuit reliability has become extraordinary challenging. Reliability-aware circuit design flows do virtually not exist and even research is in its infancy. In this paper, we propose to bring aging awareness to EDA tool flows based on so-called degradation-aware cell libraries. These libraries include detailed delay information of gates/cells under the impact that aging has on both threshold voltage (Vth) and carrier mobility (μ) of transistors. This is unlike state of the art which considers Vth only. We show how ignoring μ degradation leads to underestimating guard-bands by 19% on average. Our investigation revealed that the impact of aging is strongly dependent on the... 

    Towards aging-induced approximations

    , Article Proceedings - Design Automation Conference, 18 June 2017 through 22 June 2017 ; Volume Part 128280 , 2017 ; 0738100X (ISSN) ; 9781450349277 (ISBN) Amrouch, H ; Khaleghi, B ; Gerstlauer, A ; Henkel, J ; Sharif University of Technology
    2017
    Abstract
    In recent technology nodes, wide guardbands are needed to overcome reliability degradations due to aging. Such guardbands manifest as reduced efficiency and performance. Existing approaches to reduce guardbands trade off aging impact for increased circuit overhead. By contrast, the goal of this work is to completely remove guardbands through exploring, for the first time, application of approximate computing principles in the context of aging. As a result of naively narrowing or removing guardbands, timing errors start to appear as transistors age. We demonstrate that even in circuits that may tolerate errors, aging can be catastrophic due to unacceptable quality loss. Furthermore,... 

    QUERA: Q-Learning RPL Routing Mechanism to Establish Energy Efficient and Reliable Communications in Mobile IoT Networks

    , Article IEEE Transactions on Green Communications and Networking ; Volume 8, Issue 4 , 2024 , Pages 1824-1839 ; 24732400 (ISSN) Rezagholi Lalani, S ; Safaei, B ; Hosseini Monazzah, A. M ; Taghizadeh, H ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    2024
    Abstract
    Resource-limited mobile IoT networks are a dynamic, and uncertain wireless communicating system. In such systems, the standard RPL routing protocol cannot select long-lasting communication links due to not employing mobility-aware metrics, e.g., direction and speed of movements. While several classical heuristic approaches exist to improve PDR in RPL-based mobile networks, their solutions cannot adapt to alterations of the mobile topology. Hence, in this paper, by mapping the routing problem in mobile and resource-limited networks into an infinite-time horizon MDP, an energy-aware and reliable RPL-based routing mechanism based on Q-learning is proposed to improve PDR in mobile IoT networks.... 

    Stress-aware routing to mitigate aging effects in SRAM-based FPGAs

    , Article 26th International Conference on Field-Programmable Logic and Applications, FPL 2016, 29 August 2016 through 2 September 2016 ; 2016 ; 9782839918442 (ISBN) Khaleghi, B ; Omidi, B ; Amrouch, H ; Henkel, J ; Asadi, H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2016
    Abstract
    Continuous shrinking of transistor size to provide high computation capability along with low power consumption has been accompanied by reliability degradations due to e.g., aging phenomenon. In this regard, with huge number of configuration bits, Field-Programmable Gate Arrays (FPGAs) are more susceptible to aging since aging not only degrades the performance, it may additionally result in corrupting the configuration cells and thus causing permanent circuit malfunctioning. While several works have investigated the aging effects in Look-Up Tables (LUTs), the routing fabric of these devices is seldom studied - even though it contributes to the majority of FPGAs' resources and configuration... 

    Estimating and mitigating aging effects in routing network of FPGAs

    , Article IEEE Transactions on Very Large Scale Integration (VLSI) Systems ; Volume 27, Issue 3 , 2019 , Pages 651-664 ; 10638210 (ISSN) Khaleghi, B ; Omidi, B ; Amrouch, H ; Henkel, J ; Asadi, H ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    In this paper, we present a comprehensive analysis of the impact of aging on the interconnection network of field-programmable gate arrays (FPGAs) and propose novel approaches to mitigate the aging effects on the routing network. We first show the insignificant impact of aging on data integrity of FPGAs, i.e., static noise margin and soft error rate of the configuration cells, as well as we show the negligible impact of the mentioned degradations on the FPGA performance. As such, we focus on the performance degradation of datapath transistors. In this regard, we propose a routing accompanied by a placement algorithm that prevents constant stress on transistors by evenly distributing the... 

    Thermal-aware standby-sparing technique on heterogeneous real-time embedded systems

    , Article IEEE Transactions on Emerging Topics in Computing ; 2021 ; 21686750 (ISSN) Ansari, M ; Safari, S ; Yari Karin, S ; Gohari Nazari, P ; Khdr, H ; Shafique, M ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    IEEE Computer Society  2021
    Abstract
    Low power consumption, real-time computing, and high reliability are three key requirements/design objectives of real-time embedded systems. The standby-sparing technique can improve system reliability while it might increase the temperature of the system beyond safe limits. In this paper, we propose a thermal-aware standby-sparing (TASS) technique that aims at maximizing the Quality of Service (QoS) of soft real-time tasks, which is defined as a function of the finishing time of running tasks. The proposed technique tolerates permanent and transient faults for multicore real-time embedded systems while meeting the Thermal Safe Power (TSP) as the core-level power constraint, which avoids... 

    Thermal-Aware standby-sparing technique on heterogeneous real-time embedded systems

    , Article IEEE Transactions on Emerging Topics in Computing ; Volume 10, Issue 4 , 2022 , Pages 1883-1897 ; 21686750 (ISSN) Ansari, M ; Safari, S ; Yari Karin, S ; Gohari Nazari, P ; Khdr, H ; Shafique, M ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    IEEE Computer Society  2022
    Abstract
    Low power consumption, real-time computing, and high reliability are three key requirements/design objectives of real-time embedded systems. The standby-sparing technique can improve system reliability while it might increase the temperature of the system beyond safe limits. In this paper, we propose a thermal-aware standby-sparing (TASS) technique that aims at maximizing the Quality of Service (QoS) of soft real-time tasks, which is defined as a function of the finishing time of running tasks. The proposed technique tolerates permanent and transient faults for multicore real-time embedded systems while meeting the Thermal Safe Power (TSP) as the core-level power constraint, which avoids... 

    Introduction and evaluation of attachability for mobile IoT routing protocols with markov chain analysis

    , Article IEEE Transactions on Network and Service Management ; Volume 19, Issue 3 , 2022 , Pages 3220-3238 ; 19324537 (ISSN) Safaei, B ; Taghizade, H ; Hosseini Monazzah, A. M ; Talaei Khoosani, K ; Sadeghi, P ; Mohammadsalehi, A ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2022
    Abstract
    Reliability of routing mechanisms in wireless networks is typically measured with Packet Delivery Ratio (PDR). Basically, PDR is reported with an optimistic assumption that the topology is fully constructed, and the nodes have started their packet transmission. This is despite the fact that prior to being able to transmit packets, nodes must first join the network, and then try to keep connected as much as possible. This is a key factor in the overall reliability provided by the routing protocols, especially in mobile IoT applications, where disconnections occur frequently. Nevertheless, there is a lack of appropriate metrics, which could evaluate the routing mechanisms from this... 

    ATLAS: aging-aware task replication for multicore safety-critical systems

    , Article Proceedings of the IEEE Real-Time and Embedded Technology and Applications Symposium, RTAS ; Volume 2023-May , 2023 , Pages 223-234 ; 15453421 (ISSN); 979-835032176-0 (ISBN) Ansari, M ; Safari, S ; Yeganeh Khaksar, A ; Siyadatzadeh, R ; Gohari Nazari, P ; Khdr, H ; Shafiquen, M ; Henkel, J ; Ejlali, A ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2023
    Abstract
    A major requirement of safety-critical systems is high reliability at low power consumption. Dynamic voltage and frequency (v/f) scaling (DVFS) techniques are widely exploited to reduce power consumption. However, DVFS through downscaling v/f levels has a negative impact on the reliability of the tasks running on the cores, and through upscaling v/f levels has circuitlevel aging effects. To achieve high reliability in multicore safetycritical systems, task replication as a fault-tolerant technique is an established way to deal with the negative effect of downscaling v/f levels, but it may accelerate aging effects due to elevating the on-chip temperatures. In this paper, we propose an...