A priority list-based fuzzy logic controller for short-term unit commitment problem

Q3 Energy
J. Kumar, Ashu Verma, T. Bhatti
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引用次数: 1

Abstract

This paper presents a fuzzy logic-based priority list method to solve the unit commitment problem. The priority list order is selected according to the maximum output power rating of the generating units while satisfying all the constraints over a period of time. The turn on (commitment) and turn off (de-commitment) decision of thermal generating units is handled by priority list order with fuzzy logic algorithm. A fuzzy optimisation-based approach is developed to find the optimal solution by using fuzzy operations and if-then rules. The objective of the optimisation is to achieve minimum operating cost by scheduling of generator units. In solving the unit commitment problem, reliability and feasibility constraints are checked for the planning interval. This method is implemented on standard IEEE 69-bus, 11-thermal generator system. Use of the fuzzy logic controller with priority list method enables the handling of uncertainties in load forecast in an efficient manner.
基于优先级列表的机组短期投用模糊控制器
提出了一种基于模糊逻辑的优先级列表方法来解决机组调度问题。在满足所有约束条件的前提下,根据一段时间内发电机组的最大额定输出功率选择优先级列表顺序。采用模糊逻辑算法,按优先级列表顺序处理火电机组的开(交)关(退)决策。提出了一种基于模糊优化的方法,利用模糊运算和if-then规则寻找最优解。优化的目标是通过对发电机组的调度来达到最小的运行成本。在求解机组投入问题时,对规划区间的可靠性和可行性约束进行了检查。该方法在标准IEEE 69总线11热发生器系统上实现。采用优先级列表模糊控制器,可以有效地处理负荷预测中的不确定性。
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来源期刊
International Journal of Power and Energy Conversion
International Journal of Power and Energy Conversion Energy-Energy Engineering and Power Technology
CiteScore
1.60
自引率
0.00%
发文量
8
期刊介绍: IJPEC highlights the latest trends in research in the field of power generation, transmission and distribution. Currently there exist significant challenges in the power sector, particularly in deregulated/restructured power markets. A key challenge to the operation, control and protection of the power system is the proliferation of power electronic devices within power systems. The main thrust of IJPEC is to disseminate the latest research trends in the power sector as well as in energy conversion technologies. Topics covered include: -Power system modelling and analysis -Computing and economics -FACTS and HVDC -Challenges in restructured energy systems -Power system control, operation, communications, SCADA -Power system relaying/protection -Energy management systems/distribution automation -Applications of power electronics to power systems -Power quality -Distributed generation and renewable energy sources -Electrical machines and drives -Utilisation of electrical energy -Modelling and control of machines -Fault diagnosis in machines and drives -Special machines
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