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引用次数: 1

摘要

可重构计算(Reconfigurable Computing, RC)是一种试图通过定制计算平台以解决手头的特定问题来提高计算能力的技术。这种方法有利于处理像辐射分布计算这样的问题,这些问题由细粒度的并行浮点乘法组成。我们对使用可重构硬件进行交互式辐射分布计算的可行性进行了研究。我们引入并应用了将传统的辐射再分配算法转换为并行执行结构的技术,特别是在重用补丁信息方面。提出了一种具有可交换区域的并行渐进式辐射度实现(PPR),以动态处理RC平台中的形状因子确定和辐射度再分配,从而减少了资源饥饿之间的未解决冲突。
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Reconfigurable implementation of radiosity distribution computation
Reconfigurable Computing (RC) is a technology that attempts to increase computational power by customizing the computational platform to the specific problem at hand. This approach is favorable for handling problems like radiosity distribution computation, which consist of a fine granularity of parallel floating point multiplications. We have performed a feasibility study on using reconfigurable hardware for interactive radiosity distribution computation. We have introduced and applied techniques to convert the conventional algorithms on Radiosity Redistribution into parallel execution structures, especially in reusing patches information. Parallel Progressive Radiosity Implementation (PPR), a new system architecture with swappable area is proposed to handle Form Factor Determination and Radiosity Redistribution dynamically in RC platforms, which reduces the unresolved conflicts between the resources starvation.
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