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MV Motor Optimization: Copyright Material IEEE, Paper No. PCIC-2018-29

机译:MV电机优化:版权材料IEEE,论文编号PCIC-2018-29

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摘要

This paper presents two alternatives to make choosing the appropriate cost-effective AC machine for a given application easier. One option increases the short circuit capacity (SCC) at the motor bus; the other uses a synchronous machine (SM) in lieu of an induction machine (IM). Both methods have the potential to yield higher efficiency designs with better transient ride-through capability. There are well-defined relationships between applied voltage, applied current, and output torque. In short, higher voltages and/or currents allow a rotating machine to develop more torque. For obvious reasons, this relationship becomes extremely important for the transient performance associated with direct-on-line (DOL) starting. Adding more SCC minimizes the voltage drop, yielding more efficient and less costly designs. Over the life of a typical machine (e.g. 5000 HP IM), even a relatively small efficiency improvement realizes significant savings - enough to purchase the medium voltage (MV) distribution equipment. At 10 000 HP, the efficiency gains achieved through use of a SM instead of an IM are even greater, yielding more savings. As an added benefit, the increase in SCC leads to a more stable system, allowing the motor to ride through low voltage fault conditions that might otherwise have caused a trip. This in turn means more consistent throughput and a more profitable facility.
机译:本文提出了两种选择,可以更轻松地为给定应用选择合适的具有成本效益的交流电机。一种选择是增加电动机总线上的短路容量(SCC);另一种方法是增加短路容量(SCC)。另一个使用同步电机(SM)代替感应电机(IM)。两种方法都有可能产生效率更高的设计,并具有更好的瞬态穿越能力。施加的电压,施加的电流和输出转矩之间存在明确定义的关系。简而言之,较高的电压和/或电流使旋转的机器产生更大的扭矩。由于明显的原因,这种关系对于与直接在线(DOL)启动相关的瞬态性能变得极为重要。添加更多的SCC可以最大程度地降低电压降,从而产生更高效,更便宜的设计。在典型机器的生命周期内(例如5000 HP IM),即使是相对较小的效率改进也可以实现显着的节省-足以购买中压(MV)配电设备。在10000 HP时,通过使用SM而不是IM可以实现更高的效率提升,从而节省更多成本。另外一个好处是,SCC的增加可以使系统更稳定,从而使电动机能够通过可能导致跳闸的低压故障工况。反过来,这意味着更一致的吞吐量和更有利可图的设施。

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