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GenieHD: Efficient DNA Pattern Matching Accelerator Using Hyperdimensional Computing

机译:GenieHD:使用超维计算的高效DNA模式匹配加速器

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DNA pattern matching is widely applied in many bioinformatics applications. The increasing volume of the DNA data exacerbates the runtime and power consumption to discover DNA patterns. In this paper, we propose a hardware-software co-design, called GenieHD, which efficiently parallelizes the DNA pattern matching task. We exploit brain-inspired hyperdimensional (HD) computing which mimics pattern-based computations in human memory. We transform inherent sequential processes of the DNA pattern matching to highly-parallelizable computation tasks using HD computing. The proposed technique first encodes the whole genome sequence and target DNA pattern to high-dimensional vectors. Once encoded, a light-weight operation on the high-dimensional vectors can identify if the target pattern exists in the whole sequence. We also design an accelerator architecture which effectively parallelizes the HD-based DNA pattern matching while significantly reducing the number of memory accesses. The architecture can be implemented on various parallel computing platforms to meet target system requirements, e.g., FPGA for low-power devices and ASIC for high-performance systems. We evaluate GenieHD on practical large-size DNA datasets such as human and Escherichia Coli genomes. Our evaluation shows that GenieHD significantly accelerates the DNA matching procedure, e.g., 44.4× speedup and 54.1× higher energy efficiency as compared to a state-of-the-art FPGA-based design.
机译:DNA模式匹配已广泛应用于许多生物信息学应用中。 DNA数据量的增加加剧了发现DNA模式的运行时间和功耗。在本文中,我们提出了一种名为GenieHD的软硬件协同设计,该设计可以有效地并行化DNA模式匹配任务。我们利用模仿人类记忆中基于模式的计算的大脑启发式超高清(HD)计算。我们使用HD计算将DNA模式匹配的固有顺序过程转换为高度可并行化的计算任务。提出的技术首先将整个基因组序列和目标DNA模式编码为高维载体。一旦编码,对高维向量的轻量运算就可以识别目标图案是否存在于整个序列中。我们还设计了一种加速器架构,该架构可有效地并行化基于HD的DNA模式匹配,同时显着减少内存访问次数。可以在各种并行计算平台上实现该体系结构以满足目标系统要求,例如,低功耗设备的FPGA和高性能系统的ASIC。我们在人类和大肠杆菌基因组等实用的大型DNA数据集上评估GenieHD。我们的评估表明,与基于FPGA的最新设计相比,GenieHD显着加快了DNA匹配过程,例如44.4倍加速和54.1倍更高的能源效率。

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