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Managing Distributed Temperature Measurements in an Embedded System of a 3-Phase 10 kVA Energy Efficient Switchable Distribution Transformer Employing a Modular Approach

机译:在采用模块化方法的三相10 kVA节能型可切换配电变压器的嵌入式系统中管理分布式温度测量

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Temperature measurements are one of the most significant factors in condition monitoring and protecting transformers as well as estimating their life expectancy. With switchable transformers, it is also significant to carry out temperature monitoring to protect the switching devices. This paper presents techniques to manage temperature measurements of the windings and core of a 3-phase 10kVA switchable distribution transformer as well as switching devices that connect the tappings of the transformer. Serial digital temperature sensors DS18S20 were utilized to read the temperatures of all intended points which were distributed around the transformer and switching devices. Multi-drop connections through 1-Wire® buses were implemented to interface the sensors with some micro controllers which were located in some separated modules. Furthermore a Controller Area Network (CAN) bus was used to enable the exchange of measurement results between the modules. Software has also been developed to follow a previously developed protocol for communication through the CAN bus. From testing results, it could be shown that the techniques could be implemented by using the embedded system to achieve reliable distributed temperature measurements for the transformer and switching devices. In addition, results of the measurements reveal that the implementation of a parallel configuration of the windings at high loads reduces losses caused by the windings, which in turn improves the efficiency of the transformer.
机译:温度测量是状态监测和保护变压器以及评估其预期寿命的最重要因素之一。对于可开关变压器,进行温度监控以保护开关设备也很重要。本文介绍了用于管理三相10kVA可切换配电变压器的绕组和铁心的温度测量的技术,以及用于连接变压器抽头的开关设备的技术。串行数字温度传感器DS18S20用于读取分布在变压器和开关设备周围的所有预期点的温度。通过1-Wire®总线实现了多点连接,以使传感器与位于某些独立模块中的一些微控制器接口。此外,还使用了控制器局域网(CAN)总线来实现模块之间的测量结果交换。还已经开发了软件,以遵循以前开发的协议来通过CAN总线进行通信。从测试结果可以看出,可以通过使用嵌入式系统来实现该技术,以实现对变压器和开关设备的可靠的分布式温度测量。另外,测量结果表明,在高负载下绕组并联配置的实施减少了由绕组引起的损耗,这反过来又提高了变压器的效率。

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