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The analysis and design of architecture systems for speech recognition on modern handheld-computing devices

机译:现代手持计算设备上语音识别体系结构系统的分析和设计

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Growing demand for high performance in embedded systems is creating new opportunities to use speech recognition systems. In several ways, the needs of embedded computing differ from those of more traditional general-purpose systems. Embedded systems have more stringent constraints on cost and power consumption that lead to design bottlenecks for many computationally-intensive applications. This paper characterizes the speech recognition process on handheld mobile devices and evaluates the use of modern architecture features and compiler techniques for performing real-time speech recognition. We evaluate the University of Colorado sonic speech recognition software on the IMPACT architectural simulator and compiler framework. Experimental results show that by using a strategic set of compiler optimization, a 500 MHz processor with moderate levels of instruction-level parallelism and cache resources can meet the real-time computing and power constraints of an advanced speech recognition application.
机译:对嵌入式系统中高性能的不断增长的需求为使用语音识别系统创造了新的机会。在某些方面,嵌入式计算的需求与更传统的通用系统的需求有所不同。嵌入式系统在成本和功耗上有更严格的限制,这导致了许多计算密集型应用程序的设计瓶颈。本文描述了手持移动设备上的语音识别过程,并评估了用于执行实时语音识别的现代体系结构功能和编译器技术的使用。我们在IMPACT体系结构模拟器和编译器框架上评估了科罗拉多大学的声波语音识别软件。实验结果表明,通过使用策略性的编译器优化集,具有中等水平的指令级并行性和高速缓存资源的500 MHz处理器可以满足高级语音识别应用程序的实时计算和功率约束。

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