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Application of augmented lagrangian relaxation to coordinated scheduling of interdependent hydrothermal power and natural gas systems

机译:增强拉格朗日松弛法在水火电与天然气系统相互协调调度中的应用

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摘要

This study proposes an optimisation model for the coordinated scheduling of interdependent electric power and natural gas transmission systems from a joint operator¿s viewpoint. The objective is to minimise the coordinated social cost while satisfying network and temporal constraints of the two interdependent systems. The joint operator will coordinate hourly schedules to supply natural gas to loads or generate electric power. The authors consider the application of Lagrangian relaxation (LR) or augmented LR to relax the coupling constraints of the two systems. The Lagrangian dual is decomposed into the security-constrained unit commitment subproblem with the hydro coordination and the natural gas allocation subproblem. The application of LR for solving the coordinated problem could cause oscillations in the dual solution which is due to the non-convex characteristics of the coordinated problem represented by integer variables and network constraints. Moreover, with slight changes in multiplier values, the linear cost function of the natural gas well may result in a cycling behaviour of the gas well output between its max and min limits. To avoid numerical oscillations and improve the solution quality, the augmented LR with a piecewise linear approximation of quadratic penalty terms and the block descent coordination technique are proposed. The authors consider the 6-bus with 7-node and the 118-bus with 14-node systems to verify that the applicability of the proposed method to the coordinated scheduling of electric power and natural gas transmission systems.
机译:这项研究从联合运营商的角度提出了一个相互依赖的电力和天然气传输系统的协调调度的优化模型。目的是在满足两个相互依赖的系统的网络和时间约束的同时,最小化协调的社会成本。联合运营商将协调每小时计划,以向负载供应天然气或发电。作者考虑使用拉格朗日松弛(LR)或增强LR来松弛两个系统的耦合约束。拉格朗日对偶分解为具有水力协调和天然气分配子问题的安全约束单元承诺子问题。 LR在求解协调问题中的应用可能会导致对偶解出现振荡,这是由于整数变量和网络约束表示的协调问题的非凸特性所致。此外,随着乘数的微小变化,天然气井的线性成本函数可能会导致天然气井输出在其最大和最小极限之间的循环行为。为了避免数值振荡并提高解的质量,提出了具有二次惩罚项的分段线性逼近的增强LR和块下降协调技术。作者考虑了具有7节点的6总线系统和具有14节点的118总线系统,以验证所提出的方法在电力和天然气输送系统的协调调度中的适用性。

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