首页> 外文会议>Southeastcon, 2009. SOUTHEASTCON '09 >Performance and energy consumption optimization by tuning level-2 cache attributes for real-time signal processing systems
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Performance and energy consumption optimization by tuning level-2 cache attributes for real-time signal processing systems

机译:通过为实时信号处理系统调整2级缓存属性来优化性能和能耗

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Signal processing has been implemented in many computing devices that are successfully being used in mission-critical NASA programs, military operations, and medical devices. The popularity and demand of signal processing systems are increasing in many other domains including commercial products. Many applications in signal processing systems need tremendous amount of processing speed. In addition to efficient algorithms, signal processing systems need the best hardware support to deliver the required level of performance. Most high-performance processing cores consume l dissipate significant amount of energy challenging the (battery-life l) cooling system. It has been established that cache memory has strong influence on the performance and energy consumption of data and computation intensive systems. In this work, we model a signal processing system with a single core and a two-level cache memory hierarchy and simulate the model using MPEG-4 and H.264/AVC encoding algorithms in order to optimize the performance and energy consumption by varying the level-2 cache attributes. Simulation results indicate that tuning cache memory attributes can improve the performance and decrease the energy consumption of a given signal processing architecture. Results also indicate that this simulation platform can be used to select the right signal processing algorithm for a given architecture at an earlier stage of the design process.
机译:信号处理已在许多计算设备中实现,这些设备已成功用于关键任务的NASA程序,军事行动和医疗设备。在包括商业产品在内的许多其他领域,信号处理系统的普及和需求正在增加。信号处理系统中的许多应用都需要大量的处理速度。除了高效的算法外,信号处理系统还需要最佳的硬件支持以提供所需的性能水平。大多数高性能处理核心消耗l耗散大量能量,从而挑战了(battery-life l)冷却系统。已经确定的是,高速缓冲存储器对数据和计算密集型系统的性能和能耗具有很大的影响。在这项工作中,我们对具有单核和两级高速缓存存储器层次结构的信号处理系统进行建模,并使用MPEG-4和H.264 / AVC编码算法对模型进行仿真,以便通过改变信号强度来优化性能和能耗。二级缓存属性。仿真结果表明,调整高速缓存存储器属性可以提高给定信号处理体系结构的性能并降低能耗。结果还表明,该仿真平台可用于在设计过程的早期阶段为给定架构选择正确的信号处理算法。

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