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    TooT: An efficient and scalable power-gating method for NoC routers

    , Article 10th IEEE/ACM International Symposium on Networks-on-Chip, NOCS 2016, 31 August 2016 through 2 September 2016 ; 2016 ; 9781467390309 (ISBN) Farrokhbakht, H ; Taram, M ; Khaleghi, B ; Hessabi, S ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2016
    Abstract
    With the advent in technology and shrinking the transistor size down to nano scale, static power may become the dominant power component in Networks-on-Chip (NoCs). Powergating is an efficient technique to reduce the static power of under-utilized resources in different types of circuits. For NoC, routers are promising candidates for power gating, since they present high idle time. However, routers in a NoC are not usually idle for long consecutive cycles due to distribution of resources in NoC and its communication-based nature, even in low network utilizations. Therefore, power-gating loses its efficiency due to performance and power overhead of the packets that encounter powered-off... 

    Synchronverter-enabled DC power sharing approach for LVDC microgrids

    , Article IEEE Transactions on Power Electronics ; Volume 32, Issue 10 , 2017 , Pages 8089-8099 ; 08858993 (ISSN) Peyghami, S ; Davari, P ; Mokhtari, H ; Loh, P. C ; Blaabjerg, F ; Sharif University of Technology
    Abstract
    In a classical ac microgrid (MG), a common frequency exists for coordinating active power sharing among droop-controlled sources. Like the frequency-droop method, a voltage-based droop approach has been employed to control the converters in low voltage direct current (LVDC) MGs. However, voltage variation due to the droop gains and line resistances causes poor power sharing and voltage regulation in dc MG, which in most cases are solved by a secondary controller by using a communication network. To avoid such an infrastructure and its accompanied complications, this paper proposes a new droop scheme to control dc sources by introducing a small ac voltage superimposed onto the output dc... 

    SPONGE: a scalable pivot-based on/off gating engine for reducing static power in NoC routers

    , Article Proceedings of the International Symposium on Low Power Electronics and Design23 July 2018 ; 23-25 July , 2018 ; 15334678 (ISSN) ; 9781450357043 (ISBN) Farrokhbakht, H ; Mardani Kamali, H ; Jerger, N. E ; Hessabi, S ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    Due to high aggregate idle time of Networks-on-Chip (NoCs) routers in practical applications, power-gating techniques have been proposed to combat the ever-increasing ratio of static power. Nevertheless, the sporadic packet arrivals compromise the effectiveness of power-gating by incurring significant latency and energy overhead. In this paper, we propose a Scalable Pivot-based On/Off Gating Engine (SPONGE) which efficiently manages power-gating decisions and routing mechanism by adaptively selecting a small set of powered-on columns of routers and keeping the others in power-gated state. To this end, a router architecture augmented with a novel routing algorithm is proposed in which a... 

    SMART: a scalable mapping and routing technique for power-gating in NoC routers

    , Article 2017 11th IEEE/ACM International Symposium on Networks-on-Chip, NOCS 2017, 19 October 2017 through 20 October 2017 ; 2017 ; 9781450349840 (ISBN) Farrokhbakht, H ; Kamali, H. M ; Hessabi, S
    Abstract
    Reducing the size of the technology increases leakage power in Network-on-Chip (NoC) routers drastically. Power-gating, particularly in NoC routers, is one of the most efficient approaches for alleviating the leakage power. Although applying power-gating techniques alleviates NoC power consumption due to high proportion of idleness in NoC routers, since the timing behavior of packets is irregular, even in low injection rates, performance overhead in power-gated routers is significant. In this paper, we present SMART, a Scalable Mapping And Routing Technique, with virtually no area overhead on the network. It improves the irregularity of the timing behavior of packets in order to mitigate... 

    Characteristic curves of solar tower

    , Article American Solar Energy Society - Solar 2007: 36th ASES Annual Conf., 32nd National Passive Solar Conf., 2nd Renewable Energy Policy and Marketing Conference: Sustainable Energy Puts America to Work, 8 July 2007 through 12 July 2007, Cleveland, OH ; Volume 1 , 2007 , Pages 149-156 ; 9781604233087 (ISBN) Khoshmanesh, S ; Sharif University of Technology
    2007
    Abstract
    Large scale solar tower are capable of generating electricity at the costs comparable to those of conventional power plant. Three cost effective parameters in solar tower are diameter of collector, diameter of turbine and height of tower. The characteristic curves of the solar tower mean the relation between cost effective parameters at the specified output power. The solar tower can be equipped with water-filled bags underneath of the collector system for thermal energy storage. This research prepares all of the required relation to setup the mathematical program to find the characteristics curves of solar tower without using the water-filled bags and with using the water-filled bags. The... 

    The competitiveness of wind power compared to existing methods of electricity generation in Iran

    , Article Energy Policy ; Volume 42 , 2012 , Pages 651-656 ; 03014215 (ISSN) Moslem Mousavi, S ; Bagheri Ghanbarabadi, M ; Bagheri Moghadam, N ; Sharif University of Technology
    2012
    Abstract
    In Iran, there are more than 15,000. MW of wind power potential, but only about 90. MW have been installed since 2009. Because fuel costs are the main part of fuel-consumed power generation costs and fossil resource costs are highly subsidized in Iran, renewable energies such as wind power have yet to be fully developed. This analysis sets out to evaluate the total generating costs of wind power and conventional power plants in Iran. A levelized cost approach was conducted that included investment costs, O&M costs, fuel costs and external costs of emissions for each type of technology. Comparison of cost assessments of power generation show that by taking into account global fuel prices and... 

    Fuzzy generation scheduling for a generation company (GenCo) with large scale wind farms

    , Article Energy Conversion and Management ; Volume 51, Issue 10 , 2010 , Pages 1947-1957 ; 01968904 (ISSN) Siahkali, H ; Vakilian, M ; Sharif University of Technology
    Abstract
    Wind power is a promising alternative in power generation because of its tremendous environmental and social benefits. Generation scheduling (GS) is more important in a power system integrating wind farms. Unlike conventional power generation sources, wind power generators supply intermittent power because of uncertainty in resource. This paper presents a fuzzy approach to the generation scheduling problem of a GenCo considering uncertainties in parameters or constraints such as load, reserve and available wind power generation. The modeling of constraints is an important issue in power system scheduling. A fuzzy optimization approach is an approach that can be used to obtain the generation... 

    Stochastic unit commitment of wind farms integrated in power system

    , Article Electric Power Systems Research ; Volume 80, Issue 9 , Jan , 2010 , Pages 1006-1017 ; 03787796 (ISSN) Siahkali, H ; Vakilian, M ; Sharif University of Technology
    2010
    Abstract
    Integration of wind power generation creates new concerns for operation engineers in a power system. Unlike conventional power generation sources, wind power generators supply intermittent power due to uncertainty in parameters of wind such as its velocity. This paper presents probabilistic model for load and wind power uncertainty which can be used in operation planning (with durations up to one or two years). A stochastic model is proposed to simulate the status of units that are directly affected by the load and wind power generation uncertainties. This paper develops a solution method for generation scheduling of power system, while taking into account the stochastic behavior of the load... 

    Optimized water consumption considering power plants efficiency in power system generation

    , Article 2019 IEEE International Conference on Industrial Technology, ICIT 2019, 13 February 2019 through 15 February 2019 ; Volume 2019-February , 2019 , Pages 673-678 ; 9781538663769 (ISBN) Ganjkhani, M ; Badakhshan, S ; Azizivahed, A ; Li, L ; Chen, L ; Huang, Q ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    In order to generate adequate electricity energy, conventional power plants utilize dramatic volume of water resources. Different methods such as replacing cutting-edge technologies of facilities have been proposed to diminish water consumption in this industry. Most of the approaches are considered as medium or long-term solution which requires substantial investment costs. Meanwhile, because of the process and technology, natural gas-fired power plants need less water among conventional power plants. Therefore, shifting unit commitment planning toward these power plants would aid to save water consumption. Nevertheless, overlooking combined cycle power plants can perform negative impact on... 

    Probabilistic unit commitment with wind farms considerations

    , Article 2007 Large Engineering Systems Conference on Power Engineering, LESCOPE'07, Montreal, QC, 10 October 2007 through 12 October 2007 ; January , 2007 , Pages 73-77 ; 9781424415830 (ISBN) Hosseini, H ; Abbasi, E ; Sharif University of Technology
    2007
    Abstract
    This paper proposes a method for unit commitment in restructured power systems with high penetration of wind farms. As wind is an intermittent source of energy and can not be predicted with high accuracy, reliability of wind farms compare to conventional power plants is lower. By increasing penetration of wind farms in generation system, reliability of power system will decrease. Therefore, reliability constraint should be added to unit commitment (UC) formulation. On the other hand, wind is a green source of energy; additionally environmental crisis is very important issue in the 21st century. By adding emission constraint to UC, wind energy will be valued. Both reliability and emission... 

    Characterization of a microfluidic microbial fuel cell as a power generator based on a nickel electrode

    , Article Biosensors and Bioelectronics ; Volume 79 , 2016 , Pages 327-333 ; 09565663 (ISSN) Mardanpour, M. M ; Yaghmaei, S ; Sharif University of Technology
    Elsevier Ltd  2016
    Abstract
    This study reports the fabrication of a microfluidic microbial fuel cell (MFC) using nickel as a novel alternative for conventional electrodes and a non-phatogenic strain of Escherichia coli as the biocatalyst. The feasibility of a microfluidic MFC as an efficient power generator for production of bioelectricity from glucose and urea as organic substrates in human blood and urine for implantable medical devices (IMDs) was investigated. A maximum open circuit potential of 459mV was achieved for the batch-fed microfluidic MFC. During continuous mode operation, a maximum power density of 104Wm-3 was obtained with nutrient broth. For the glucose-fed microfluidic MFC, the maximum power density of... 

    Fuzzy based generation scheduling of power system with large scale wind farms

    , Article 2009 IEEE Bucharest PowerTech: Innovative Ideas Toward the Electrical Grid of the Future ; 2009 ; 9781424422357 (ISBN) Siahkali, H ; Vakilian, M ; Sharif University of Technology
    Abstract
    Wind power introduces a new challenge to system operators. Unlike conventional power generation sources, wind power generators supply intermittent power because of uncertainty in its resource. In a power system involved largescale wind power generation scenario, wind intermittency could oblige the system operator to allocate a greater reserve power, in order to compensate the possible mismatch between predicted and the actual wind power output. This would increase the total operation cost. This paper presents a new approach in fuzzy based generation scheduling (GS) problem using mixed integer nonlinear programming (MINLP). While the reserve requirements, load generation balance and wind...