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Achieving unity power factor at floating grid conditions in a cement plant in India - Case Study

机译:印度水泥厂在浮动电网条件下实现单位功率因数-案例研究

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Most cement plants in India and around the world face a unique problem in regards with power factor. In industries where their local generation with their Captive Power Plant (CPP) and Waste Heat Recovery System (WHRS) is equal to or greater than the plant's total utilization, the load import from the Grid is brought down close to zero. This is done to reduce the power cost because the Grid power is comparatively expensive. Though the Grid power is not required, the connection to the Grid is mandatory for the system in floating mode to ensure the stability of the system, to avoid black-outs in the event of CPP failures/trips and to tackle unplanned/sudden variations in the load. Such a setup makes it extremely complex to maintain power factor at the Grid incomer. For more than a decade, it was assumed that no solution exists to this problem where CPPs are connected and power drawn from the Grid is close zero. In India, a state like Chhattisgarh, where Grid billing is in kVAh and on TOD11TOD- Time of Day billing system. It refers to the practice of setting different price for a of unit energy at different times of the day. The general classification is On-Peak, Off-Peak and Normal hours. basis, power factor plays a major role in Grid cost optimization. This paper contains a discussion on the problem, the solution and a case study of achieving unity power factor at floating grid conditions in a cement plant in India.
机译:印度和世界各地的大多数水泥厂在功率因数方面都面临一个独特的问题。在具有自备电厂(CPP)和废热回收系统(WHRS)的当地发电量等于或大于电厂总利用率的行业中,从电网导入的负荷降低到接近零。这样做是为了降低电力成本,因为电网电力相对昂贵。尽管不需要电网电源,但对于处于浮动模式的系统,必须连接到电网,以确保系统的稳定性,避免在CPP故障/跳闸的情况下出现断电,并解决计划外/突发的变化。负载。这样的设置使得维护电网收入者的功率因数变得极其复杂。十多年来,人们认为在连接CPP且从电网汲取的功率接近于零的情况下,没有解决该问题的方案。在印度恰蒂斯加尔邦(Chhattisgarh)这样的州,电网计费以kVAh和TOD为单位 1 1TOD-每日计费系统。它指的是在一天的不同时间为单位能源设置不同价格的做法。总体分类为高峰时段,非高峰时段和正常时间。因此,功率因数在电网成本优化中起着重要作用。本文讨论了印度水泥厂在浮动电网条件下实现单位功率因数的问题,解决方案和案例研究。

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