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首页> 外文期刊>Journal of Low Power Electronics >Implementation of Virtual Instruments as a Power Quality Analysis Tool
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Implementation of Virtual Instruments as a Power Quality Analysis Tool

机译:虚拟仪器作为电能质量分析工具的实现

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摘要

Virtual instruments (VI) offer flexibility to engineers in the tasks of measurement and monitoring in many fields of study and various industries. The use of graphical programming in VI helps create a user-defined solution that caters to specific needs. VI increases productivity and decreases costs for test, control and design applications by integrating software, such as the National Instrument Laboratory VI Engineering Workbench (LabVIEW), modular measurement and control hardware with different connections, such as PXI, PCI, USB and Ethernet. The harmonic components need to be measured to analyze power quality. The electrical supply that flows through non-linear loads produces harmonics that disturb the functions of other equipment connected to the same supply. The harmonic, voltage and current VIs that are available in the LabVIEW software are used to analyze power quality, so that appropriate actions can be taken to reduce disturbances. The power equipment is remotely monitored using the VIs. The data are analyzed at the low power side, in contrast to traditional power quality analysis tools, which analyze data at the captured side. This approach can provide a safer operation for system users.
机译:虚拟仪器(VI)在许多研究领域和各个行业中为工程师提供了在测量和监视任务方面的灵活性。在VI中使用图形化编程有助于创建满足特定需求的用户定义解决方案。通过集成诸如国家仪器实验室VI工程工作台(LabVIEW)的软件,具有不同连接的模块化测量和控制硬件(如PXI,PCI,USB和以太网),VI可以提高生产率并降低测试,控制和设计应用程序的成本。需要测量谐波分量以分析电能质量。流经非线性负载的电源会产生谐波,从而干扰连接到同一电源的其他设备的功能。 LabVIEW软件中提供的谐波,电压和电流VI用于分析电能质量,因此可以采取适当的措施来减少干扰。使用VI对电源设备进行远程监控。与传统的电能质量分析工具相比,该数据在低功率侧进行分析,而传统的电能质量分析工具则在捕获侧进行数据分析。这种方法可以为系统用户提供更安全的操作。

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