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首页> 外文期刊>Journal of VLSI signal processing systems for signal, image, and video technology >Architecture Considerations For Multi-format Programmablevideo Processors
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Architecture Considerations For Multi-format Programmablevideo Processors

机译:多格式可编程视频处理器的体系结构注意事项

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摘要

Many different video processor architectures exist. Its architecture gives a processor strength for a particular application. Hardwired logic yields the best performance/cost, but a programmable processor is important for applications that support multiple coding standards, proprietary functions, or future changes to application requirements. Programmable video processor architectures achieve best performance through the use of parallelism at the data (SIMD), instruction (VLIW), and multiprocessor level, and optimally sized ALU, multiplier, and load/store datapaths. Because low-cost memory architectures are not optimized for the random access patterns of video processing, the performance of video processors is often limited by memory bandwidth rather than processing resources. Careful data organization alleviates memory bandwidth limitations. When choosing a video processor it is important to consider many factors, particularly performance, cost, power consumption, programmability, and peripheral support.
机译:存在许多不同的视频处理器架构。它的体系结构为特定应用程序提供了处理器强度。硬连线逻辑可产生最佳的性能/成本,但是可编程处理器对于支持多种编码标准,专有功能或将来对应用程序要求的更改的应用程序很重要。可编程视频处理器体系结构通过在数据(SIMD),指令(VLIW)和多处理器级别上使用并行性以及最佳大小的ALU,乘法器和加载/存储数据路径来实现最佳性能。由于低成本内存架构并未针对视频处理的随机访问模式进行优化,因此视频处理器的性能通常受内存带宽而非处理资源的限制。精心的数据组织可以减轻内存带宽限制。选择视频处理器时,必须考虑许多因素,特别是性能,成本,功耗,可编程性和外围设备支持。

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