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Unit Commitment Based Controller for Grid-Connected PMG-Based WECSs with Battery Storage Units

机译:基于单位承诺的基于网格连接的PMG的WECS,具有电池存储单元

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This paper presents a controller for operating the generator-side ac-dc power electronic converter (PEC) of a grid-connected permanent magnet generator (PMG)-based wind energy conversion system (WECS) that has battery storage units (BSUs). The proposed controller is developed based on the Lagrangian Relaxation unit commitment (LRUC) method to determine the command electromagnetic torque, Te* to be developed by the PMG at each wind speed. The value of Te* is set to adjust the power produced by the PMG in order to meet the power demands of the generator-side PEC and BSUs. The LRUC-based controller is implemented for performance testing on a grid-connected 7.5 kW PMG-based WECSs with 4.44 kW BSUs. Performance tests are conducted for changes in the wind speed, active and reactive power delivered to the host grid, and system parameters. Test results show that the LRUC-based controller is capable of adjusting the power produced by the PMG to meet the power demands of the generator-side PEC and BSUs. This capability is found to have minor sensitivity to the changes in wind speeds, levels of the power delivery to the host grid, and state-of-charge of BSUs.
机译:本文介绍了一种用于操作具有电池存储单元(BSUS)的基于电网连接的永磁发电机(PMG)的发电机侧AC-DC电力电子转换器(PEC)的控制器。所提出的控制器是基于拉格朗日弛豫单元承诺(LRUC)方法而开发的,以确定命令电磁扭矩,T e *由PMG在每个风速下开发。 t的值 e *设置为调整PMG产生的功率,以满足发电机端PEC和BSU的电源。基于LRUC的控制器实现用于具有4.44 kW BSU的基于网格连接的7.5 kW PMG的WECS。进行性能测试,用于对主机网格提供的风速,主动和无功功率的变化以及系统参数。测试结果表明,基于LRUC的控制器能够调整PMG产生的功率,以满足发电机侧PEC和BSU的功率需求。发现这种能力对风速的变化,主机电网的电力水平以及BSUS的负责人进行了轻微的敏感性。

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