Optimal operation of cascaded reservoirs based on Fork/Join multi-core parallel framework
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TV697.1+2

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    Abstract:

    In order to meet the refined management demand of optimal operation of large-scale cascaded reservoirs and solve the problems of long running time and low computational efficiency, a parallel method based on the Fork/Join multi-core parallel framework is proposed for optimal operation of large-scale cascaded reservoirs. A parallel discrete differential dynamic programming(PDDDP)was designed to describe the parallelization scheme for optimal operation of cascaded reservoirs based on the Fork/Join framework. The long-term power generation optimal operation of large-scale cascaded reservoirs on the Hongshui River was used as a case study. The testing results show that the parallel method can make full use of the acceleration performance of the multi-core processor, significantly reducing the computation time, and improving the computational efficiency. Moreover, the choice of the reasonable scale control threshold of the Fork/Join framework is critical to taking full advantage of parallel computation.

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王森,马志鹏,李善综,等.基于Fork/Join多核并行框架的梯级水库群优化调度[J].水利水电科技进展,2017,37(2):48-54.(WANG Sen, MA Zhipeng, LI Shanzong, et al. Optimal operation of cascaded reservoirs based on Fork/Join multi-core parallel framework[J]. Advances in Science and Technology of Water Resources,2017,37(2):48-54.(in Chinese))

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History
  • Received:February 12,2016
  • Revised:
  • Adopted:
  • Online: March 03,2017
  • Published: March 10,2017
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