Efficient scheduling is a key concern for the effectual execution of performance driven Grid applications, such as workflows. Many list heuristics have been developed for scheduling workflows in centralized Grid envir...
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Next generation networks, as well as the Future Internet, aim to provide context-sensitive business services that adapt to changing user needs, business goals, and environmental conditions. This paper describes the co...
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The application of microarray data for cancer classification has recently gained in popularity. The main problem that needs to be addressed is the selection of a smaller subset of genes from the thousands of genes in ...
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With the growth of Utility Grids and various Grid market infrastructures, the need for efficient and cost effective scheduling algorithms is also increasing rapidly, particularly in the area of meta-scheduling. In the...
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Microarray data are expected to be useful for cancer classification. The main problem that needs to be addressed is the selection of a smaller subset of genes from the thousands of genes in the data that contributes t...
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A pragmatic and straightforward approach to semantic service discovery is to match inputs and outputs of user requests with the input and output requirements of registered service descriptions. This approach can be ex...
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Single Carrier Transmission (SCT) is a competing technique for Orthogonal Frequency Division Multiplexing (OFDM) in Broadband Wireless systems (BWS). Recent developments in Frequency Domain Equalization (FDE) using De...
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Moving and resizing desktop windows are frequently performed but largely unexplored interaction tasks. The standard title bar and border dragging techniques used for window manipulation have not changed much over the ...
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The delay of a circuit implemented in a Lookup table (LUT) based Field-Programmable Gate Arrays (FPGAs) is a combination of routing delays, and logic block delays. However most of an FPGA's area is devoted to prog...
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Field Programmable Gate Arrays (FPGAs) are becoming increasingly popular for use in high-integrity safety related and safety critical systems. FPGAs offer a number of potential benefits over traditional microprocessor...
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Field Programmable Gate Arrays (FPGAs) are becoming increasingly popular for use in high-integrity safety related and safety critical systems. FPGAs offer a number of potential benefits over traditional microprocessor based softwaresystems, such as predictable timing performance, the ability to perform highly parallel calculations, predictable emulation of obsolete components, and (in the case of SRAM based FPGAs) the ability to reconfigure to avoid hardware failures. However these abilities do not come for free and often designers are forced to make pessimistic safety and reliability assumptions leading to conservative overall system designs. In this paper a modular, and hence more scalable approach, to performing FPGA safety analysis is presented.
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