Parallelized formulation of the maximum likelihood-expectation maximization algorithm for fine-grain message-passing architectures

被引:8
作者
CruzRivera, JL [1 ]
DiBella, EVR [1 ]
Wills, DS [1 ]
Gaylord, TK [1 ]
Glytsis, EN [1 ]
机构
[1] GEORGIA INST TECHNOL,MICROELECTR RES CTR,ATLANTA,GA 30332
关键词
D O I
10.1109/42.476118
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Recent architectural and technological advances have led to the Feasibility of a new class of massively parallel processing systems based on a fine-grain, message-passing computational model. These machines provide a new alternative for the development of fast, cost-efficient Maximum Likelihood-Expectation Maximization (ML-EM) algorithmic formulations. As an important first step in determining the potential performance benefits to be garnered from such formulations, we have developed an ML-EM algorithm suitable for the high-communications, low-memory (HCLM) execution model supported by this new class of machines. Evaluation of this algorithm indicates a normalized least-square error comparable to, or better than, that obtained via a sequential ray-driven ML-EM formulation and an effective speedup in execution time (as determined via discrete-event simulation of the Pica multiprocessor system currently under development at the Georgia Institute of Technology) of well over two orders of magnitude compared to current ray-driven sequentialML-EM formulations on high-end workstations. Thus, the HCLM algorithmic formulation may provide ML-EM reconstructions within clinical time-frames.
引用
收藏
页码:758 / 762
页数:5
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