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Self-Reconfigurable Embedded Systems on Low-Cost FPGAs

Iván González, Estanislao Aguayo, Sergio López-Buedo

Open publisher page 26 citations

Abstract

Hardware acceleration significantly increases the performance of embedded systems built on programmable logic. allowing an fpga-based mlcroblaze processor to self-select the coprocessors it uses can help reduce area requirements and increase a system's versatility. with a simple hardware arrangement, requiring only a few external connections and no additional components, low-cost FPGAs such as Xilinx's spartan-3 can become self-reconfigurable platforms.

About this research paper

What this paper is about

Hardware acceleration significantly increases the performance of embedded systems built on programmable logic. allowing an fpga-based mlcroblaze processor to self-select the coprocessors it uses can help reduce area requirements and increase a system's versatility. with a simple hardware arrangement, requiring only a few external connections and no additional components, low-cost FPGAs such as Xilinx's spartan-3 can become self-reconfigurable platforms.

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OpenAlex reports 26 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Hardware acceleration significantly increases the performance of embedded systems built on programmable logic. allowing an fpga-based mlcroblaze processor to self-select the coprocessors it uses can help reduce area requirements and increase a system's versatility. with a simple hardware arrangement, requiring only a few external connections and no additional components, low-cost FPGAs such as Xilinx's spartan-3 can become self-reconfigurable platforms.

Key concepts: Field-programmable gate array, Computer science, Coprocessor, Embedded system, Reconfigurable computing, Simple (philosophy), Programmable logic device, Hardware acceleration

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