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Impact of mains connected three-phase induction motor loading levels on network voltage unbalance attenuation

机译:主电源连接的三相感应电动机负载水平对电网电压不平衡衰减的影响

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摘要

Voltage unbalance (VU) in power systems should be managed in a systematic manner in order to minimise its adverse effects on both customer equipment and supply utilities. It is a well known fact that three-phase induction motor performance can be significantly affected in the presence of supply voltage unbalance. It is also known that three-phase induction motors can help to reduce pre-existing network voltage unbalance levels. Recently undertaken research aligned with IEC/TR 61000-3-13:2008 Technical Report on voltage unbalance management (emission allocation and emission assessment) have quantified the contribution made by induction motors to the net voltage unbalance at a point of connection. It is perceived that loading level of three-phase induction motors will have an influence on this contribution. Hence, this study focuses on a sensitivity analysis of induction motor loading level on the voltage unbalance emission contribution to the point of connection. Simulation work undertaken indicates that increased loading levels on induction motors tend to exacerbate negative sequence voltage unbalance factor (VUF) at the point of connection in comparison to lightly loaded induction motors.
机译:应该以系统的方式管理电源系统中的电压不平衡(VU),以最大程度地减少对用户设备和供电公用事业的不利影响。众所周知的事实是,在电源电压不平衡的情况下,三相感应电动机的性能会受到显着影响。众所周知,三相感应电动机可以帮助降低预先存在的网络电压不平衡水平。最近进行的与IEC / TR 61000-3-13:2008技术报告相一致的有关电压不平衡管理(排放分配和排放评估)的研究已经量化了感应电动机对连接点净电压不平衡的贡献。可以看出,三相感应电动机的负载水平将对此贡献产生影响。因此,本研究着重于感应电动机负载水平对连接点上电压不平衡发射贡献的敏感性分析。进行的仿真工作表明,与轻载感应电动机相比,感应电动机上增加的负载水平往往会加剧连接点处的负序电压不平衡因子(VUF)。

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