Research on Isolation Technology of Aseptic Process Equipment in Pharmaceutical Industry

Huimeng Zhang
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Abstract

With the continuous innovation and development of science and technology, the level of biomedical technology has been effectively improved. In the process of pharmaceutical manufacturing, the requirements for clean technology have been continuously improved, and the aseptic process equipment isolation technology has been effectively applied. This paper mainly discusses the importance of applying aseptic isolation technology from the perspective of aseptic isolation technology, expounds the aseptic isolation technology in the pharmaceutical industry, and conducts detailed analysis from three angles. The traditional PID control algorithm has simple structure, convenient adjustment and wide application. However, there are also many shortcomings. The quality of drug production varies greatly. Traditional PID control has a certain degree of influence on the control effect due to poor adaptability. hether the content of colonies can be controlled will affect the energy consumption of the system. The two indicators of system energy consumption are the most concerned by users in drug production. Therefore, the author tries to combine the single neuron algorithm with self-learning, robustness and no need to establish a specific mathematical model with the classical PID algorithm to realize the control of aseptic isolation technology.
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制药工业无菌工艺设备的隔离技术研究
随着科学技术的不断创新和发展,生物医学技术水平得到了有效的提高。在药品生产过程中,对清洁技术的要求不断提高,无菌工艺设备隔离技术得到了有效的应用。本文主要从无菌分离技术的角度论述了应用无菌分离技术的重要性,阐述了无菌分离技术在制药行业中的应用,并从三个角度进行了详细的分析。传统的PID控制算法结构简单,调整方便,应用广泛。然而,也有许多缺点。药品生产质量参差不齐。传统PID控制由于自适应能力差,对控制效果有一定影响。菌落的含量是否可控将影响系统的能耗。在药品生产中,系统能耗这两个指标是用户最关心的。因此,笔者试图将具有自学习、鲁棒性和无需建立特定数学模型的单神经元算法与经典PID算法相结合,实现无菌隔离技术的控制。
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