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Power Management of Domestic Air Condition Units

机译:家用空调机组的电源管理

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Domestic air conditioner equipment run long time a day to create a comfortable environment during hot summer weather. Instead of this, using such units may involve lots of risks. Air condition unit is one of the high electric power consumption appliances. This power surges each time the refrigerant compressor starts up leads to increase the temperature of electric connections. Coupled with the extreme hot weather put the resident's lives and their properties in real danger. A well-known heating-cooling cycle of the electric connections due to increasing-decreasing electric current cycle passing through the connections as a result of inrush current each time the compressor starting up leads to weak them. With the time, these connections become hotter and hotter to a specific temperature at which fire may ignite and/ or poisoning gases may emit from sockets and joints. Manufacturers start using inrush current limiters in the power circuit and an active bypass circuit that is activated after the inrush current peak decays. This paper presents an investigation of a simple method to manage the inrush current during the compressor starting up each start-stop cycle. This procedure includes switch OFF the unit's fan just before the compressor starting up to provide an extra power to minimising the unit total inrush current. While the fan is continue rotating by its inertia and when the compressor reaches its steady state current or just before it, the fan is reconnected. Inrush current of the fan in this case will significantly reduce because it is continue rotating. High inrush current is needed to start any electrical motor from its idle to rotating state at its steady state speed.
机译:家用空调设备每天长时间运行,以在炎热的夏季天气中营造舒适的环境。取而代之的是,使用此类设备可能会带来很多风险。空调机组是高耗电设备之一。每当制冷剂压缩机启动时,该功率就会激增,从而导致电连接温度升高。再加上极端炎热的天气,使居民的生命及其财产面临真正的危险。电连接器的众所周知的加热-冷却循环是由于每次压缩机启动时涌入电流导致流过连接器的电流循环增加-减少而导致的。随着时间的流逝,这些连接变得越来越热,达到特定温度,在该温度下,可能会从插座和接头处引燃和/或释放出有毒气体。制造商开始在电源电路中使用浪涌电流限制器,并在浪涌电流峰值衰减后激活有源旁路电路。本文介绍了一种简单方法,用于管理压缩机在每个启停周期内启动时的涌入电流。此过程包括在压缩机启动之前关闭设备的风扇,以提供额外的功率以最小化设备的总涌入电流。当风扇通过其惯性继续旋转时,以及当压缩机达到其稳态电流时或之前,风扇将重新连接。在这种情况下,风扇的浪涌电流会因为继续旋转而大大降低。为了使任何电动机以其稳态速度从空转状态启动到旋转状态,都需要高的浪涌电流。

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