Modeling Power Transformers for the Design of SWER Line Coupling Networks.

C. Kikkert
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引用次数: 12

Abstract

Many countries use Single Wire Earth Return Power (SWER) lines for providing power to customers in rural areas. These SWER lines can be up to 300 km long. For Smart Grid applications and power quality assurance on SWER lines, a communication system is required. Power Line Communications (PLC) signals in the 9 to 95 kHz CENELEC-A frequency band are the most economical means for providing this communication on SWER lines. To inject the PLC signals on the typical 19.1 kV SWER line, a low cost coupler is required. The behavior of SWER line power transformers at PLC frequencies is critical for the design of this coupling network. This paper describes the development of a wide frequency band model for SWER line power transformers and uses this model for the design of coupler networks. A novel technique is used to match the transformer model to measurements. This model matching technique and the resulting transformer model are also applicable to other power transformers.
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电力变压器建模用于应答线路耦合网络设计。
许多国家使用单线回地电源(SWER)线路向农村地区的用户提供电力。这些应答线路最长可达300公里。对于智能电网应用和应答线路上的电能质量保证,需要通信系统。电力线通信(PLC)信号在9至95千赫的cenelea频段是最经济的手段提供这种通信答录线。为了在典型的19.1 kV应答线路上注入PLC信号,需要一个低成本的耦合器。SWER线路电力变压器在PLC频率下的性能对该耦合网络的设计至关重要。本文介绍了SWER线路电力变压器宽频带模型的发展,并将该模型用于耦合器网络的设计。采用一种新颖的技术使变压器模型与测量结果相匹配。该模型匹配技术和得到的变压器模型也适用于其他电力变压器。
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