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Titlebook: Architecture Exploration of FPGA Based Accelerators for BioInformatics Applications; B. Sharat Chandra Varma,Kolin Paul,M. Balakrishnan Bo

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發(fā)表于 2025-3-21 19:19:05 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Architecture Exploration of FPGA Based Accelerators for BioInformatics Applications
影響因子2023B. Sharat Chandra Varma,Kolin Paul,M. Balakrishnan
視頻videohttp://file.papertrans.cn/162/161279/161279.mp4
發(fā)行地址Offers techniques to carry out design space exploration of FPGA based accelerators.Presents a methodology to study benefits of HEBs in FPGAs in the context of application acceleration.Shows FPGA based
學科分類Springer Series in Advanced Microelectronics
圖書封面Titlebook: Architecture Exploration of FPGA Based Accelerators for BioInformatics Applications;  B. Sharat Chandra Varma,Kolin Paul,M. Balakrishnan Bo
影響因子This book presents an evaluation methodology to design future FPGA fabrics incorporating hard embedded blocks (HEBs) to accelerate applications. This methodology will be useful for selection of blocks to be embedded into the fabric and for evaluating the performance gain that can be achieved by such an embedding. The authors illustrate the use of their methodology by studying the impact of HEBs on two important bioinformatics applications: protein docking and genome assembly. The book also explains how the respective HEBs are designed and how hardware implementation of the application is done using these HEBs. It shows that significant speedups can be achieved over pure software implementations by using such FPGA-based accelerators. The methodology presented in this book may also be used for designing HEBs for accelerating software implementations in other domains besides bioinformatics. This book will prove useful to students, researchers, and practicing engineers alike.
Pindex Book 2016
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Evolution of the Mid-Cretaceous Triadnvolves floating-point computations. We used the methodology discussed in Chap.?. to accelerate the application. Accordingly, we explain the identification of kernel from the software implementation and their FPGA implementation to get performance benefits.
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發(fā)表于 2025-3-22 16:10:23 | 只看該作者
https://doi.org/10.1007/BFb0019667New high-performance applications demand high compute power. These applications have always driven hardware designers to come up with new hardware architectures to execute them efficiently. On the other hand, today’s connected world with complex but standard interfaces require extensive software components to be integral part of any solution.
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Future Directions,New high-performance applications demand high compute power. These applications have always driven hardware designers to come up with new hardware architectures to execute them efficiently. On the other hand, today’s connected world with complex but standard interfaces require extensive software components to be integral part of any solution.
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發(fā)表于 2025-3-22 23:26:26 | 只看該作者
Monetary Management in Latin American hardware. Often, microprocessors are preferred over ASICs, since they give flexibility to users. They allow the same hardware to be used for a variety of applications. Still for applications requiring very high speed computation and/or very low energy ASICs have been preferred over software soluti
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Is the European Monetary System a DM-Zone?ware and executed in parallel to achieve speedup over softwares. FPGA consists of CLBs (consisting of LUTs and flip-flops) and interconnects which are programmable. HEBs implement performance critical components efficiently vis-a-vis their implementation using configurable logic and thus improve the
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