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FPGA Based Embedded Multiprocessor Architecture 基于FPGA的嵌入式多处理器架构
S. Jadhav, C. Bhoyar
Multiprocessor is a typical subject within the Computer architecture field of scope. A new methodology based on practical sessions with real devices and design is proposed. Embedded multiprocessor design presents challenges and opportunities that stem from task coarse granularity and the large number of inputs and outputs for each task. We have therefore designed a new architecture called embedded concurrent computing (ECC), which is implementing on FPGA chip using VHDL. The design methodology is expected to allow scalable embedded multiprocessors for system expansion. In recent decades, two forces have driven the increase of the processor performance: Advances in very large-scale integration (VLSI) technology and Micro architectural enhancements. Therefore, we aim to design the full architecture of an embedded processor for realistic to perform arithmetic, logical, shifting and branching operations. We will be synthesize and evaluated the embedded system based on Xilinx environment. Processor performance is going to be improving through clock speed increases and the clock speed increases and the exploitation of instruction- level parallelism. We will be designing embedded multiprocessor based on Xilinx environment or Modelsim environment.
多处理机是计算机体系结构领域内的一门典型学科。提出了一种基于实际设备和设计的实践方法。嵌入式多处理器设计带来了挑战和机遇,这些挑战和机遇源于任务粗粒度和每个任务的大量输入和输出。因此,我们设计了一种称为嵌入式并发计算(ECC)的新架构,并使用VHDL在FPGA芯片上实现。该设计方法有望允许可扩展的嵌入式多处理器进行系统扩展。近几十年来,两股力量推动了处理器性能的提高:超大规模集成(VLSI)技术的进步和微架构的增强。因此,我们的目标是设计一个嵌入式处理器的完整架构,以实际执行算术,逻辑,移位和分支操作。我们将对基于赛灵思环境的嵌入式系统进行综合和评估。随着时钟速度的提高和指令级并行性的开发,处理器性能将不断提高。我们将设计基于Xilinx环境或Modelsim环境的嵌入式多处理器。
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引用次数: 4
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International Journal of Advanced Research in Computer Science and Electronics Engineering
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