Control and Optimization of Negative Pressure in Scrap Copper Smelting

Author:

Li Ying Dao1,Zhong Wei Hong1,Guan Hong Wei1,Ma Xiu Shui1

Affiliation:

1. Zhejiang University

Abstract

Negative pressure is the main control variable in scrap copper smelting process, the control of negative pressure is not only closely related with producing safely, but also produces a direct impact on the quality of the anode plate, it is also a key breakthrough in energy saving. This paper first analyses the characteristics of negative pressure control in scrap copper smelting process, aims to larger overshoot and longer regulation under conventional PID control method, and then utilizes fuzzy control to correct the PID parameters online, to achieve the optimization control of negative pressure. Simulation result shows that the adjustment process of optimized control of negative pressure is steady and rapid, usually no or slightly overshoot, and the settling time is also reduced significantly.

Publisher

Trans Tech Publications, Ltd.

Reference10 articles.

1. Liao Fang-fang, XIAO Jian. Research on self-tuning of PID parameters based on BP Neural Networks, Vol. 17 (2005)1711-1713.

2. Kang Jingle. Study on fire refining technology of scrap copper regeneration, Non-ferrous Metals, Vol. 18 (2008) 66-71.

3. Luo Yi, Zheng Dongshen. Intelligent handling system of the Cr-containing Effluent based on neural network PID, Vol27, (2006)214-216.

4. Ming Cheng, Qiang Sun and E. Zhou. New Self-Tuning Fuzzy PI Control of a Novel Doubly Salient Permanent-Magnet Motor Drive, IEEE Transactions on Industrial Electronics, Vol. 53, (2006)814-821.

5. S.Z. He, S.H. Tan, F.L. Xu, P.Z. Wang.  PID self-tuning control using a fuzzy adaptive mechanism, Second IEEE International Conference on Fuzzy Systems, Vol. 2 (1993)708-714.

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