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水力发电学报 ›› 2019, Vol. 38 ›› Issue (7): 57-66.doi: 10.11660/slfdxb.20190706

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水联网渠道可控性判别指标研究

  

  • 出版日期:2019-07-25 发布日期:2019-07-25

Indicator of canal controllability for internet of water

  • Online:2019-07-25 Published:2019-07-25

摘要: 渠道是调水和输配水的主要工程型式,渠道可控性是渠道水联网控制安全与高效运行的重要前提。本文根据一阶时滞系统的一般可控性原理,提出了基于积分时滞模型参数的渠道可控性概念及其判别指标,建立了渠道可控性与自动控制方法选择的判别关系。以疏勒河昌马南灌区二分干渠为例,模拟验证了上述可控性指标及算法选择合理性。研究表明,案例渠道可控性指标为0.2 ~ 0.3,比例积分算法对此系统无法有效控制,线性二次型算法控制效果受扰动幅度影响较大,而模型预测算法能有效控制。这一结论进一步说明了渠道控制效果是渠道可控性与控制算法的综合结果,可控性判别指标可用于判断渠道可控性并合理选择控制算法以及指导渠道设

关键词: 水联网, 渠道自动控制, 积分时滞模型, 一阶时滞系统, 渠道可控性, 判别指标, 控制算法

Abstract: A canal is the major facility for water transfer and distribution, and the indicator of its controllability is a prerequisite for reliable and efficient control of its flow system via the Internet of water. In this paper, an indicator of canal controllability is established based on the general controllability principle of the first-order systems with time delay using the parameters of an integrator-delay model. We also work out a quantitative relationship of this indicator versus the selection of a control algorithm for the second canal of Changma South Irrigation District in the Shule River basin, and verify it via numerical simulations. The results show that for this case canal, its indicator of controllability is 0.2 - 0.3 and a proportional-integral algorithm is ineffective in controlling its flow. And a linear quadratic control produces an actual operation greatly affected by disturbance amplitudes, while a model predictive control achieves satisfactory effects. All this is consistent with the judgment by using the indicator of canal controllability, further demonstrating the dependency of the canal control effect on the synthesis of canal controllability and control algorithm capability.

Key words: internet of water, canal automation, integrator-delay model, first-order system with time delay, canal controllability, indicator, control algorithm

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