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Development of a 'Programmable Logic Controller Circuitry' For Optimal Power Distribution in a Manufacturing Industries

机译:开发“可编程逻辑控制器电路”以实现制造业中的最佳配电

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Problem statement: In industries the powder demand/consumption is fixed by the power supply agency. However, at times, the demand/Consumption may exceed the fixed level and will result in, the industry paying heavy penalties to the supply agency. In most of the large and medium scale industries, controlling of power consumption is done by monitoring the powder demand indicator unit activated by a microprocessor (up) circuitry. The major drawback of controlling the consumption using up circuitry is that the peak value is fixed and cannot be changed in proportion to the fluctuation in load. To address above issue an attempt is made in the present work, to replace the up circuitry with a PLC circuitry which provides for flexibility, i.e., to change maximum demand level based on the fluctuations in the load through suitable programming in the PLC circuitry. Approach: A detailed literature review was made on the application and functioning of supply controls using up circuitry along with the associated limitations. The application of PLC circuitry in the place of up circuitry is reviewed. The methodology of the present research was presented. The experimental work was briefed. Results: The various results were listed and discussed. Major conclusions drawn, based on the present research was shown. Conclusion: The major contribution of the present study lies, in zeroing the frequency of the power consumption, crossing the fixed level, through the design and development of an optimal PLC circuitry resulting in a significant savings in the power consumption.
机译:问题陈述:在工业中,粉末的需求/消耗量由供电机构确定。但是,有时需求/消耗量可能会超过固定水平,从而导致该行业向供应机构支付重罚。在大多数大型和中型工业中,通过监视由微处理器(上)电路激活的粉末需求指示器单元来控制功耗。使用耗电电路控制功耗的主要缺点是峰值是固定的,不能与负载波动成比例地改变。为了解决上述问题,在本工作中试图用提供灵活性的PLC电路代替上升电路,即通过负载的波动通过PLC电路中的适当编程来改变最大需求水平。方法:对使用上升电路以及相关限制的电源控制的应用和功能进行了详细的文献综述。回顾了PLC电路代替上电路的应用。介绍了本研究的方法。简要介绍了实验工作。结果:列出并讨论了各种结果。显示了基于本研究得出的主要结论。结论:本研究的主要贡献在于,通过设计和开发最佳的PLC电路,将功耗频率调零,跨越固定水平,从而显着节省了功耗。

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