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Operation and control of HVDC stations using continuous mixed p-norm-based adaptive fuzzy technique

机译:基于连续混合基于p范数的自适应模糊技术的高压直流输电站运行与控制

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摘要

The power system is purely non-linear and there exist a lot of uncertainties in generation, transmission, and distribution sectors. This study focuses on the operation and control of a voltage source converter (VSC)-based high voltage direct current (HVDC) transmission system, which can cope up with system non-linearity and parameter uncertainties. The HVDC system connects an offshore wind farm to the onshore power grid. A new adaptive fuzzy logic controller is proposed for both onshore and offshore HVDC stations to control the real and reactive power flow in normal and undertrain parameter conditions. The adaptive technique is based on the continuous mixed p-norm algorithm, which updates the fuzzy inference system automatically at a high convergence speed. The performance of the proposed adaptive controller is tested under different parameter uncertainties and the results are compared with Taguchi optimisation-based proportional-integral controllers.
机译:电力系统是纯粹的非线性系统,在发电,输电和配电领域存在很多不确定性。这项研究的重点是基于电压源转换器(VSC)的高压直流(HVDC)传输系统的操作和控制,该系统可以应对系统的非线性和参数不确定性。高压直流输电系统将海上风电场连接到陆上电网。提出了一种适用于陆上和海上高压直流输电站的新型自适应模糊逻辑控制器,以控制正常和欠载条件下的有功和无功潮流。自适应技术基于连续混合p范数算法,该算法以较高的收敛速度自动更新模糊推理系统。在不同参数不确定性下测试了所提出的自适应控制器的性能,并将结果与​​基于田口优化的比例积分控制器进行了比较。

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