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Charge motion in technical insulators: facts, fancies and simulations

机译:技术绝缘子的电荷运动:事实,幻想和模拟

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Technical insulators are largely characterised by unipolar ionic flow. The carriers are supplied by injection, or by bulk ionisation, and the charge transport is space charge perturbed. Continuum equations have provided the basis for models of charge flow. First I show the validity of the Deutsch assumption in gases, and extend the calculation to describe the situation far downwind. The equations also account for many effects in solids such as electrode blocking capacitance, injection transients, open circuit decay, and short circuit discharge currents. Next, we consider the problem of reconstructing distributions from acoustic pulse and similar measurements that contain instrumental broadening of the signals. It is then necessary to explain the observed evolution of the charge density. We discuss problems associated with simulation algorithms, and with modelling the microscopic details of the carrier motion. We mention some direct measurements of deposited charge, and consider the problem of accounting for low frequency oscillations in cables. Finally, we outline the materials problems (identity of carriers and traps), the numerical problems (reconstruction, discrimination between the effects of various carrier types and dipoles, and deduction of parameters), and the logical problems (distinction between simulation and accurate modelling) which need our future attention.
机译:工业绝缘子的主要特征是单极性离子流。通过注入或通过本体电离来提供载体,并且电荷传输受到空间电荷的干扰。连续方程为电荷流模型提供了基础。首先,我展示了Deutsch假设在气体中的有效性,并扩展了计算以描述远风情况。该方程还考虑了固体中的许多影响,例如电极阻挡电容,注入瞬变,开路衰减和短路放电电流。接下来,我们考虑从声脉冲和包含信号加宽信号的类似测量中重建分布的问题。然后有必要解释观察到的电荷密度的变化。我们讨论与仿真算法有关的问题,并与对载体运动的微观细节进行建模有关。我们提到了一些直接测量沉积电荷的方法,并考虑了解决电缆中低频振荡的问题。最后,我们概述了材料问题(载流子和陷阱的身份),数值问题(重构,各种载流子类型和偶极子的影响之间的区分以及参数推导)以及逻辑问题(模拟与精确建模之间的区别)这需要我们未来的关注。

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