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81.
82.
The election problem in asynchronous distributed systems with bounded faulty processes 总被引:1,自引:1,他引:0
Sung Hoon Park 《The Journal of supercomputing》2007,41(1):89-104
Determining the “weakest” failure detectors is a central topic in solving many agreement problems such as Consensus, Non-Blocking
Atomic Commit and Election in asynchronous distributed systems. So far, this has been studied extensively for several such
fundamental problems. It is stated that Perfect Failure Detector P is the weakest failure detector to solve the Election problem with any number of faulty processes. In this paper, we introduce
Modal failure detector M and show that to solve Election, M is the weakest failure detector to solve election when the number of faulty processes is less than ⌈n/2⌉. We also show that it is strictly weaker than P.
相似文献
Sung Hoon ParkEmail: |
83.
Scheduling algorithms are used in content delivery systems to control the resource allocation rate. They not only improve
system efficiency, but also increase user satisfaction. Lower renege rate and less waiting time for users are the main goals
for a scheduling algorithm. Among existing algorithms, On-Demand strategy does not perform well, while rate control channel
allocation policies performs much better. Pure-Rate-Control (PRC) and Multiple-Service-Class (MSC) belong to the rate control
algorithms. MSC performs well, but a drawback is that it uses the Hot Index, which is hard to decide and has significant effects
on the performance. In order to solve this problem and to improve the overall system performance, two new algorithms, Modified
MSC(MMSC) and Adaptive Algorithm (AA), are proposed in this paper. Both of them solved the problem of MSC very well and improved
the overall performance. For example, the renege rate of AA is about 5.4% less than that of MMSC, and about 9.8% less than
that of MSC.
相似文献
Yun ZhangEmail: |
84.
Recently, High Performance Computing (HPC) platforms have been employed to realize many computationally demanding applications
in signal and image processing. These applications require real-time performance constraints to be met. These constraints
include latency as well as throughput. In order to meet these performance requirements, efficient parallel algorithms are
needed. These algorithms must be engineered to exploit the computational characteristics of such applications.
In this paper we present a methodology for mapping a class of adaptive signal processing applications onto HPC platforms
such that the throughput performance is optimized. We first define a new task model using the salient computational characteristics
of a class of adaptive signal processing applications. Based on this task model, we propose a new execution model. In the
earlier linear pipelined execution model, the task mapping choices were restricted. The new model permits flexible task mapping
choices, leading to improved throughput performance compared with the previous model. Using the new model, a three-step task
mapping methodology is developed. It consists of (1) a data remapping step, (2) a coarse resource allocation step, and (3)
a fine performance tuning step. The methodology is demonstrated by designing parallel algorithms for modern radar and sonar
signal processing applications. These are implemented on IBM SP2 and Cray T3E, state-of-the-art HPC platforms, to show the
effectiveness of our approach. Experimental results show significant performance improvement over those obtained by previous
approaches. Our code is written using C and the Message Passing Interface (MPI). Thus, it is portable across various HPC platforms.
Received April 8, 1998; revised February 2, 1999. 相似文献
85.
U. Rösler 《Algorithmica》2001,29(1-2):238-261
This paper develops general tools for the analysis of stochastic divide and conquer algorithms. We concentrate on the average
performance and the distribution of the running time of the algorithm. As a special example we analyse the average performance
and the running time distribution of the (2k + 1)-median version of Quicksort.
Online publication October 13, 2000. 相似文献
86.
It has recently been proposed that classical music has a fractal nature. A reanalysis of this proposal reveals some logical flaws in the argument. Chaos, fractals, time series and Schenkerian analysis are contrasted and inter-related. Further consideration of Bach's Invention No 1 (BWV772) leads to the conclusion that there is no inherent fractal nature in classical music; although the converse is not true. In other words, it is feasible to use fractal ideas to compose musical pieces — an area of much interest in recent years.
Brian Henderson-Sellers is Associate Professor in the School of Information Systems at the University of New South Wales. His research interests span object-oriented information systems and environmental simulation modelling. Over the last three years, he has begun to integrate his software and musical interests in a collaboration, supported by the Australia Council for the Arts, with Greg White in the compositional use of object technology and strange attractors. Their first composition together was premiered in October 1992. He has, amongst other books, published A Book of Object-oriented Knowledge,Prentice Hall.
David Cooper is a lecturer and director of the electronic studio in the Music Department of the University of Leeds. He is a composer with a special interest in the music of Bela Bartok. He has recently been appointed technical director of the English University Funding Council Teaching and Learning Technology project in music which is producing multi-media computer-based learning packages. Publications include A Pascal MIDI Library for the Atari ST, Musicus,1, 2 (1989), and A Computationally Non-intensive Algorithm for Pitch Recognition, Array,12, 2 (1992). 相似文献
87.
针对线性规划问题,文中引入了一种与传统障碍函数不同的新的障碍函数,其在可行域边界上的取值是有限的.沿此有限障碍函数所确定的新的搜索方向,给出了短步长全牛顿步内点算法,结果证明该算法具有目前求解线性规划问题最好的复杂性界. 相似文献
88.
89.
《国际计算机数学杂志》2012,89(5):1012-1029
Many problems in mathematics and engineering lead to Fredholm integral equations of the first kind, e.g. signal and image processing. These kinds of equations are difficult to solve numerically since they are ill-posed. Therefore, regularization is required to obtain a reasonable approximate solution. This paper presents a new regularization method based on a weighted H1 seminorm. Details of numerical implementation are given. Numerical examples, including one-dimensional and two-dimensional integral equations, are presented to illustrate the efficiency of the proposed approach. Numerical results show that the proposed regularization method can restore edges as well as details. 相似文献
90.