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A Class of Control Strategies for Energy Internet Considering System Robustness and Operation Cost Optimization

机译:考虑系统鲁​​棒性和运营成本优化的能源互联网的一类控制策略

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摘要

Aiming at restructuring the conventional energy delivery infrastructure, the concept of energy Internet (EI) has become popular in recent years. Outstanding benefits from an EI include openness, robustness and reliability. Most of the existing literatures focus on the conceptual design of EI and are lack of theoretical investigation on developing specific control strategies for the operation of EI. In this paper, a class of control strategies for EI considering system robustness and operation cost optimization is investigated. Focusing on the EI system robustness issue, system parameter uncertainty, external disturbance and tracking error are taken into consideration, and we formulate such robust control issue as a structure specified mixed H2/H∞ control problem. When formulating the operation cost optimization problem, three aspects are considered: realizing the bottom-up energy management principle, reducing the cost involved by power delivery from power grid (PG) to microgrid (MG), and avoiding the situation of over-control. We highlight that this is the very first time that the above targets are considered simultaneously in the field of EI. The integrated control issue is considered in frequency domain and is solved by a particle swarm optimization (PSO) algorithm. Simulation results show that our proposed method achieves the targets.
机译:旨在重组传统的能源交付基础设施,近年来能源互联网(EI)的概念变得流行。 EI的出色优势包括开放性,稳健性和可靠性。大多数现有文献都注重EI的概念设计,缺乏关于制定ei运作特定控制策略的理论调查。本文研究了考虑系统鲁​​棒性和运营成本优化的EI控制策略。专注于EI系统的稳健性问题,考虑系统参数不确定性,外部干扰和跟踪错误,我们将如此强大的控制问题作为一个规定的混合H2 /H∞控制问题。在制定运营成本优化问题时,考虑了三个方面:实现自下而上的能量管理原理,从电网(PG)到微电网(MG)的电力传递减少了所涉及的成本,避免过度控制的情况。我们强调这是第一次在EI领域同时考虑上述目标。频域中考虑了集成控制问题,通过粒子群优化(PSO)算法来解决。仿真结果表明,我们的提出方法实现了目标。

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