To deal with the scalable and fast unbiased sampling problems in unstructured P2P systems, a sampling method based on multi-peer adaptive random walk (SMARW) is proposed. In the method, based on the multi-peer random ...
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This paper presents a novel algorithm to detect null pointer dereference errors. The algorithm utilizes both of the must and may alias information in a compact way to improve the precision of the detection. Using may ...
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Multiprocessor architectures are becoming more attractive for embedded systems, and also for multimedia embedded systems. In multimedia embedded systems, there exist both hard real-time tasks and multimedia stream wit...
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In this paper we describe load scheduling, a novel method that balances load among register files by residual resources. Load scheduling can reduce register pressure for clustered VLIW processors with distributed regi...
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Rate Adaptation (RA) is a mechanism to choose transmission rate based on the dynamic channel quality in wireless networks. The adaptation algorithm run solely at the sender side in 802.11 networks is studied. The key ...
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The paper presents the ongoing work of studying FMEA method for embedded safety critical software via formal analysis of various dependence relations among software elements, which can fairly improve the automation an...
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ISBN:
(纸本)9780769532622
The paper presents the ongoing work of studying FMEA method for embedded safety critical software via formal analysis of various dependence relations among software elements, which can fairly improve the automation and precision of both system level and detailed level FMEA. These dependence relations are depicted by the formal models abstracted from software design and implementation, and the FMEA processes for both structural and object-oriented software are proposed respectively. The initial result of case study shows the effectiveness of the approach. I 2008 IEEE.
In this paper, we propose an example-based decoder for a statistical machine translation (SMT) system, which is used for spoken language machine translation. In this way, it will help to solve the re-ordering problem ...
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Current high performance computing systems all rely on parallelprocessing techniques to achieve high performance. With the parallel computer systems scaling up, the new generation of high performance computers puts m...
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ISBN:
(纸本)9781605580777
Current high performance computing systems all rely on parallelprocessing techniques to achieve high performance. With the parallel computer systems scaling up, the new generation of high performance computers puts more emphasis on "high productivity" [1], rather than "high performance" as in the past. These new systems will not only meet the traditional requirements of computing performance, but also address the ongoing technical challenges in the current high-end computing domain regarding energy consumption, reliability, etc. For energy consumption, with the computer system scaling up, it increases dramatically [2]. High energy consumption means high maintenance cost and low system stability. For example, the peak energy consumption of the Earth Simulator and BlueGene/L is 18MW and 1.6MW respectively. For reliability, with the complexity of a computer system increasing, its meantimebetween-failure (MTBF) is becoming significantly shorter than what is required by many current high performance computing applications [3], such as BlueGene/L. Therefore, energy optimization techniques and fault tolerance techniques should be introduced to computer systems to achieve low energy consumption and high reliability. To improve the productivity of high performance computing systems, we need to find a proper way to measure it. Unfortunately, traditional measurement models can not evaluate the system productivity comprehensively and effectively [4]. To address this issue, this paper proposes an effective scalability metric for high performance computing systems based on Gustafson speedup law. The metric makes a good balance among runtime productivity factors including computing performance, energy consumption and reliability. The contribution of our work lies in the following three aspects. First, in order to measure the scalability of an energyconsumption optimized parallel program, we should consider not only whether the program computing performance is scalable, but also w
Peer-to-Peer (P2P) computing systems are rapidly growing in importance as the medium of choice for the mass storage. Peers in the most P2P systems randomly choose logical neighbors without any knowledge about underlyi...
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Internet resources have the natural characteristics of growth, autonomy and diversity, which have brought great challenges to the efficient aggregation of these resources. Utilizing overlay to organize resources and s...
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Internet resources have the natural characteristics of growth, autonomy and diversity, which have brought great challenges to the efficient aggregation of these resources. Utilizing overlay to organize resources and support efficient resource discovery is an important approach to aggregate resources on-demand in Internet-based Virtual Computing Environment (iVCE). This paper gives an overview of research advances on overlay technologies in iVCE. To adapt to the growth and autonomy of Internet resources, an overlay topology construction mechanism based on Kautz graph is first introduced, and it is extended to a universal method for constructing overlay topologies based on arbitrary regular graphs. To adapt to the diversity of Internet resources, a grouped overlay topology construction mechanism is then proposed. Based on the overlay constructed above, an efficient range query scheme is presented, and the optimization methods of overlay topology as well as other complex query techniques are discussed.
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