Добірка наукової літератури з теми "Preallocation"

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Статті в журналах з теми "Preallocation"

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Greatbatch, David. "A turn-taking system for British news interviews." Language in Society 17, no. 3 (September 1988): 401–30. http://dx.doi.org/10.1017/s0047404500012963.

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ABSTRACTThe British news interview turn-taking system operates through a simple form of turn-type preallocation. This article shows that a large number of the systematic differences between the news interview and mundane conversation are a product of these constraints on the production of types of turns. It then explores the relationship of turn-type preallocation in news interviews to the background legal and institutional restrictions on British broadcast journalists. In so doing, it notes how the organisation of turn-taking in two other types of broadcast interview can differ from that in the news interview due to differences between the institutionalized footings that the interviewers are conventionally required to maintain within them. (Conversation analysis, mass communication, British speech, turn-taking systems, institutional talk)
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Gheorghioiu, Ovidiu, Alexandru Salcianu, and Martin Rinard. "Interprocedural compatibility analysis for static object preallocation." ACM SIGPLAN Notices 38, no. 1 (January 15, 2003): 273–84. http://dx.doi.org/10.1145/640128.604154.

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Elsesser, Gary W., Viet N. Ngo, Sourav Bhattacharya, and Wei Tek Tsai. "Processor preallocation and load balancing of DOALL loops." Journal of Supercomputing 8, no. 2 (June 1994): 135–61. http://dx.doi.org/10.1007/bf01204659.

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Belim, S. Yu. "KEY PREALLOCATION PROTOCOL BASED ON A SECRET SHARING SCHEME." Applied Mathematics and Fundamental Informatics 7, no. 2 (2020): 018–22. http://dx.doi.org/10.25206/2311-4908-2020-7-2-18-22.

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The symmetric encryption session key generation protocol based on the Shamir secret sharing scheme and the Blom key predistribution scheme is proposed. Predistribution of key materials through secure channels is used. Key calculation is based on symmetric polynomials from three variables. Key calculation is based on threshold scheme (3,4). The basic protocol for two participants was considered. A scheme for an arbitrary number of users has been summarized.
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Chen, Albert Y., Tsung-Yu Lu, Matthew Huei-Ming Ma, and Wei-Zen Sun. "Demand Forecast Using Data Analytics for the Preallocation of Ambulances." IEEE Journal of Biomedical and Health Informatics 20, no. 4 (July 2016): 1178–87. http://dx.doi.org/10.1109/jbhi.2015.2443799.

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Guo, Yu, Zhenqiang Mi, Yang Yang, Huan Ma, and Mohammad S. Obaidat. "Efficient Network Resource Preallocation on Demand in Multitenant Cloud Systems." IEEE Systems Journal 13, no. 4 (December 2019): 4027–38. http://dx.doi.org/10.1109/jsyst.2019.2910276.

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Mu, Rongjun, and Xin Zhang. "Control Allocation Design of Reaction Control System for Reusable Launch Vehicle." Abstract and Applied Analysis 2014 (2014): 1–13. http://dx.doi.org/10.1155/2014/541627.

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During the early stage of reusable launch vehicle (RLV) reentry flight, reaction control system (RCS) is the major attitude control device. RCS, which is much different from the atmospheric steer’s control, requires a well designed control allocation system to fit the attitude control in high altitude. In this paper, an indexed control method was proposed for RCS preallocation, a 0-1 integer programming algorithm was designed for RCS allocation controller, and then this RCS scheme’s effect was analyzed. Based on the specified flight mission simulation, the results show that the control system is satisfied. Moreover, several comparisons between the attitude control effect and RCS relevant parameters were studied.
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Shobaki, Ghassan, Maxim Shawabkeh, and Najm Eldeen Abu Rmaileh. "Preallocation instruction scheduling with register pressure minimization using a combinatorial optimization approach." ACM Transactions on Architecture and Code Optimization 10, no. 3 (September 16, 2013): 1–31. http://dx.doi.org/10.1145/2512432.

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He, Shuibing, Yuanhua Yang, Xianbin Xu, and Xiaohua Xu. "MGPA: a multi-granularity space preallocation algorithm for object-based storage devices." International Journal of Embedded Systems 8, no. 2/3 (2016): 237. http://dx.doi.org/10.1504/ijes.2016.076116.

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Chuan-Ching Sue and Sy-Yen Kuo. "Design and analysis of accelerative preallocation protocol for WDM star-coupled networks." Journal of Lightwave Technology 20, no. 3 (March 2002): 338–49. http://dx.doi.org/10.1109/50.988982.

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Дисертації з теми "Preallocation"

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Lydeamore, Michael John. "Approximations of stochastic household models for comparing antiviral allocation schemes." Thesis, 2015. http://hdl.handle.net/2440/93524.

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From the first recorded influenza pandemic in 1890, there have been new strains of influenza which have caused pandemics approximately every 30 years including recent events such as the H5N1 Avian 'Flu pandemic and the 2009 H1N1 Swine 'Flu pandemic. Although the 2009 pandemic was mild in nature, if events of the past are any indication then control of future pandemics is of utmost importance. Vaccination is commonly looked at to help control the spread of a pandemic, however, vaccinations are strain-specific. While developing a new vaccine is possible, the World Health Organisation estimates that this process would take four to five months. This means that vaccination cannot be used to help control the spread of influenza early on in a pandemic. An alternative are antivirals which are not strain-specific, meaning that they can potentially be used to help control the spread of influenza early on in a pandemic. Antivirals are, however, not as effective at reducing the spread of disease when compared to vaccination. In the 2009 Swine 'Flu pandemic, many countries worldwide utilised antiviral medication, with the aim to assist in controlling the spread of influenza. The most common method in which these antivirals were utilised we refer to as dynamic allocation. In dynamic allocation, when the first person in a household experiences influenza-like symptoms, they report to a health professional. Then, a sample is sent for laboratory testing. If the individual is confirmed to have influenza, the entire household is allocated a course of antivirals and every member of the household begins taking them. The potential weakness in this strategy is the delay between becoming infectious and a household receiving antivirals. We consider an alternative antiviral allocation scheme which we call preallocation. In a preallocation scheme, instead of waiting for antivirals to be delivered after the first confirmed infection, as is the case with dynamic allocation, the antivirals are delivered to households at the beginning of the pandemic. When the first person experiences symptoms, they contact a health professional via a telephone hotline. The professional then decides if it is likely that the individual has influenza. If the individual is likely to have influenza then the entire household starts taking antivirals immediately, just as is the case in dynamic allocation. The advantage of this scheme is that the delay is essentially zero, but there is the potential for the antivirals to be wasted in at least two ways. First, this type of identification of infection is clearly less precise than laboratory testing. Second, it is possible that antivirals will be preallocated to a household who will never experience infection and so those antivirals will essentially be wasted. It is this tradeoff that is the focus of this thesis. The stochastic households epidemic model which is detailed and developed in this work incorporates the household structure of a general population. This allows us to incorporate the stronger mixing of individuals who share a household compared to individuals in the general population, as well as the fact that antivirals are allocated to an entire household when infection is first detected. To analyse this model, we develop two approximations: (i) A branching process approximation, and (ii) a deterministic approximation, that assist us in calculating quantities associated with a pandemic. The branching process is very fast to compute, but due to required assumptions in the derivation, it is only able to describe the early stages of the pandemic. The branching process is able to rapidly compute quantities such as the Malthusian parameter, r, and the household reproductive ratio, R* [* subscript], but is unable to calculate quantities such as the final epidemic size, that is, the total number of people infected over the course of the pandemic.. The deterministic approximation does not allow for as rapid evaluation as the branching process approximation, but is able to approximately reproduce the entire expected pandemic curve, giving access to quantities such as the expected final epidemic size. Both of these approximations are fast to compute so we can explore a range of parameters and compare the two allocation schemes - dynamic allocation and preallocation. We show that preallocation of antivirals often leads to a smaller final epidemic size than dynamic allocation for a severe pandemic outbreak, while a dynamic allocation scheme often gives a lower Malthusian parameter, r, and household reproductive ratio, R* [* subscript]. We provide a justification for this behaviour and demonstrate that the results are relatively robust across the parameters controlling the pandemic. We also consider a number of extensions to the deterministic approximation such as the incorrect use of antivirals, a hybrid allocation scheme, and the production of antivirals during the pandemic. Under these extensions, the general behaviour of the two schemes - preallocation yielding a lower final epidemic size but dynamic allocation yielding superior early-time quantities - is unchanged.
Thesis (M.Phil.) -- University of Adelaide, School of Mathematical Sciences, 2015
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Тези доповідей конференцій з теми "Preallocation"

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Gheorghioiu, Ovidiu, Alexandru Salcianu, and Martin Rinard. "Interprocedural compatibility analysis for static object preallocation." In the 30th ACM SIGPLAN-SIGACT symposium. New York, New York, USA: ACM Press, 2003. http://dx.doi.org/10.1145/604131.604154.

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Sivalingam, Krishna M., Kalyani Bogineni, and Patrick W. Dowd. "Design and performance analysis of preallocation protocols for WDM photonic networks." In Fibers '92, edited by Kadiresan Annamalai. SPIE, 1993. http://dx.doi.org/10.1117/12.141074.

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Hale, Robert, and Brad Hutchings. "Preallocating Resources for Distributed Memory Based FPGA Debug." In 2019 29th International Conference on Field Programmable Logic and Applications (FPL). IEEE, 2019. http://dx.doi.org/10.1109/fpl.2019.00067.

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