PD-Activity in Generator Stator Bar insulation versus Voltage Frequency and Temperature

T. Aakre, E. Ildstad
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Abstract

Condition assessment of generators is today performed at various voltage frequencies and test temperatures. The main purpose of this paper is to compare measured PD results from sections of generator bars with that of similar tests performed on laboratory made test objects with void enclosures of known geometry. The test objects were subjected to ac voltage in the frequency range from 0.1 to 300 Hz, increasing in steps up to a maximum of 10 kV. The measured values of partial discharge inception voltages (PDIV), apparent charge magnitude and number of PDs were compared to estimated values in the temperature range of 20° to $155^{\circ}\mathrm{C}$ using an impedance abcmodel, including both conduction and dielectric response. It was found that the capacitive abc-model sufficiently accurately describes the observed PDIV values at temperatures below $100^{\circ}\mathrm{C}$ and test frequencies below 50 Hz. At temperatures higher temperatures the measured PDIV values were found to decrease with increasing temperature, particularly so at the lowest test frequencies. This is in agreement with the assumption of increased conductivity and higher rate of polarization at increased temperatures. The high number of low magnitude PDs, strongly indicating that several discharges are needed for a complete discharge of a void surface.
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发电机定子棒绝缘的pd活性随电压、频率和温度的变化
发电机的状态评估目前在各种电压频率和测试温度下进行。本文的主要目的是比较发电机棒部分的测量PD结果与在实验室制造的具有已知几何形状的空洞外壳的测试对象上进行的类似测试的结果。测试对象承受0.1至300 Hz频率范围内的交流电压,逐步增加,最高可达10 kV。在20°~ 155^{\circ}\ mathm {C}$的温度范围内,利用阻抗abcmodel(包括传导和介电响应)将局部放电起始电压(PDIV)、视电荷大小和局部放电数的测量值与估计值进行了比较。结果表明,电容式abc模型能够充分准确地描述温度低于$100^{\circ}\ mathm {C}$和测试频率低于50 Hz时观测到的PDIV值。在较高的温度下,PDIV值随着温度的升高而降低,特别是在最低的测试频率下。这与在温度升高时电导率增加和极化率提高的假设是一致的。大量的低量级脉冲放电,强烈表明需要多次放电才能使空洞表面完全放电。
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