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首页> 外文期刊>IEEE Transactions on Power Delivery >Residual Flux Mitigation of Protective Current Transformers Used in an Autoreclosing Scheme
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Residual Flux Mitigation of Protective Current Transformers Used in an Autoreclosing Scheme

机译:自动重合闸方案中使用的保护性电流互感器的剩余通量缓解

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摘要

To avoid saturation of a protective current transformer (CT) operating under an autoreclosing scheme, the CT size should be chosen much higher than a similar CT operating under a single-step fault clearing scheme. The main reason for this significant difference is that the residual flux (caused by the first stage of the fault) cannot be noticeably reduced during the deadtime interval of the reclosing process and, therefore, the occurrence of a subsequent fault can extremely saturate the CT. In this paper, a low-cost, low-power electronic device is developed and introduced to demagnetize the CT under the reclosing deadtime interval. It will be shown that by using this device, the required size of the CT is reduced by about 40%. To develop this device, an existing flux-based demagnetization technique is improved to operate faster and more efficient. The performance of this technique is independent of the CT characteristic parameters and provides promising results despite its simplicity. The proposed device can be employed to de-rate the new CTs to be installed in the system and/or to compensate the existing inservice CTs. Comprehensive computer simulations and laboratory experiments are employed to validate the reliability and effectiveness of the proposed compensation method.
机译:为避免在自动重合闸方案下工作的保护电流互感器(CT)饱和,应选择比在单步故障清除方案下工作的类似CT更大的CT尺寸。造成这种显着差异的主要原因是,在重合闸过程的停滞时间间隔内,残余磁通量(由故障的第一阶段引起的)无法显着降低,因此,后续故障的发生会使CT极度饱和。在本文中,开发了一种低成本,低功耗的电子设备,用于在重合死区时间间隔内使CT消磁。将显示,通过使用该设备,所需的CT尺寸减少了约40%。为了开发该装置,对现有的基于通量的退磁技术进行了改进,以使其运行更快,更高效。该技术的性能与CT特性参数无关,尽管简单,但仍可提供令人鼓舞的结果。所提出的设备可以用于降低将要安装在系统中的新CT的等级和/或补偿现有的服务中的CT。综合计算机模拟和实验室实验被用来验证所提出的补偿方法的可靠性和有效性。

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