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首页> 外文期刊>INFORMS journal on computing >A Dynamic Programming Approach to Power Consumption Minimization in Gunbarrel Natural Gas Networks with Nonidentical Compressor Units
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A Dynamic Programming Approach to Power Consumption Minimization in Gunbarrel Natural Gas Networks with Nonidentical Compressor Units

机译:带有不相同压缩机组的枪管天然气网络中动态功耗最小化的编程方法

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摘要

Inspired by the widespread and increasing usage of natural gas, we study the power consumption minimization problem associated with natural gas pipeline transmission in gunbarrel networks with nonidentical compressors. To accurately and flexibly model both gas flow dynamics and compressor working domains, we formulate the problem as a dynamic programming problem. Then we propose an approximate solution approach based on state dimension reduction. We analyze the problem properties and characterize conditions under which optimality is not compromised by the proposed solution approach. Next, we conduct numerical experiments using two data sets based on real networks in China and a data set from the public library GasLib. Numerical results demonstrate that the proposed solution approach significantly reduces computation time without compromising optimality in most cases. Specifically, the proposed solution approach obtains optimal solutions more than a 100 times faster than the exhaustive search when gas pressures are discretized at 0.01 MPa. Further, the optimality gaps do not exceed 0.4%.
机译:受天然气的广泛使用和不断增长的启发,我们研究了带有不同压缩机的枪管网络中与天然气管道传输相关的功耗最小化问题。为了准确,灵活地对气流动力学和压缩机工作域建模,我们将该问题表述为动态规划问题。然后我们提出了一种基于状态降维的近似解方法。我们分析了问题的性质,并描述了所提出的解决方案不会损害最优性的条件。接下来,我们使用两个基于中国实际网络的数据集和一个来自公共图书馆GasLib的数据集进行数值实验。数值结果表明,在大多数情况下,所提出的解决方案方法可显着减少计算时间,而不会影响最优性。具体而言,当气压以0.01 MPa离散时,所提出的解决方案方法获得的最佳解决方案比穷举搜索快100倍以上。此外,最佳间隙不超过0.4%。

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