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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >DC corona characteristics derived from corona cage tests and simulations
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DC corona characteristics derived from corona cage tests and simulations

机译:直流电晕特性来自电晕笼式测试和模拟

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This study presents experimental and simulation studies on DC corona characteristics to investigate the behavior of high voltage direct current transmission (HVDC) lines. Experimental studies are performed using an indoor corona cage and various conductor configurations, which are the scaled models of the prospective HVDC line in Turkey. Following the preliminary tests with single line models of aluminum rods and stranded conductors, DC corona inception voltages (CIVs) of prospective bundled conductor configurations are measured by using a daylight UV corona camera and a high-sensitive micro ammeter. Measurements include three different sub-conductor spacing both for the positive and for the negative DC voltages. Corona currents are measured for the voltages above the CIV levels. Experimental studies are varied by complementary simulations using a FEM based software, COMSOL Multyphysics. Following the development of 3D models of the corona cage and the prospective conductor configurations, electric field distribution along the conductor surfaces are determined. CIV measurements and simulation results are used to compute the corona inception electric field strengths of the aforementioned configurations. Radio interference voltages and audible noise levels of the configurations are finally calculated at a constant test voltage using the empirical formulations and the field simulation results. The results are discussed at the end to guide the design of intended HVDC line in Turkey.
机译:本研究提出了关于DC电晕特性的实验和仿真研究,以研究高压直流传输(HVDC)线的行为。使用室内电晕笼和各种导体配置进行实验研究,这些配置是土耳其预期HVDC线的缩放模型。在用铝棒和绞合导体的单线型号的初步测试之后,通过使用日光紫外电晕相机和高敏感的微电流表来测量前瞻性导体配置的DC电晕初始电压(CIVS)。测量包括用于正和负直流电压的三种不同的子导体间隔。测量CORONA电流的CIV级别的电压。使用FEM基础的软件,COMSOL Mulyphysics互补模拟来改变实验研究。在电晕笼的3D模型的发展之后,确定沿导体表面的电场分布。 CIV测量和仿真结果用于计算上述配置的电晕初始电场强度。使用经验制定和现场仿真结果,最终以恒定的测试电压计算配置的无线电干扰电压和可听噪声水平。最后讨论了结果,以指导土耳其预期HVDC线的设计。

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