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Decentralized state estimation of combined heat and power systems using the asynchronous alternating direction method of multipliers

机译:使用乘法器异步交流方向方法分散的状态估计混合热量和电力系统

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摘要

State estimation is a statistical method used to obtain accurate estimates of system operating states. It has been used to provide essential operating data for analysis, control and optimization in various energy supply systems. In a combined heat and power system, it is impractical to perform a state estimation procedure in a pool due to the information gap between the different energy sectors. To handle this problem, a decentralized state estimation algorithm based on the asynchronous alternating direction method of multipliers for a whole combined heat and power system is proposed. A dynamic state estimation model for a combined heat and power system is formulated considering the spatiotemporal quasidynamics of the network of heating pipelines. A framework based on the alternating direction method of multipliers is then proposed to solve the state estimation model in a decentralized way. First, an alternating estimation strategy is employed to solve district heating network subproblems to address the nondifferentiable and nonlinear constraints involved. Second, an asynchronous framework is employed to implement the alternating direction method of multipliers to reduce the idle time in the calculation of the subproblems and improve the overall computational efficiency. Case studies show that the proposed algorithm can still provide accurate estimates of the states of the integrated system even though it is decentralized. Compared to the standard implementation of the alternating direction method of multipliers, the proposed framework offers improved computational efficiency.
机译:状态估计是用于获得系统操作状态准确估计的统计方法。它已被用于提供各种能源系统中的分析,控制和优化的基本操作数据。在组合的热量和电力系统中,由于不同能量扇区之间的信息间隙,在池中执行状态估计过程是不切实际的。为了处理该问题,提出了一种基于用于整个组合的热电系统乘法器的异步交替方向方法的分散状态估计算法。考虑到加热管道网络的时空Quasidynicics制定了组合热电系统的动态状态估计模型。然后提出基于乘法器的交替方向方法的框架以分散的方式解决状态估计模型。首先,采用交替估计策略来解决区域加热网络子问题,以解决所涉及的非增强和非线性约束。其次,采用异步框架来实现乘法器的交替方向方法,以减少计算子问题的计算中的空闲时间并提高整体计算效率。案例研究表明,即使它分散化,所提出的算法仍然可以提供集成系统状态的准确估计。与乘法器交替方向方法的标准实现相比,所提出的框架提供了改进的计算效率。

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