工业机械驱动选择的能源效率和算法

P. Andrenko, A. Rogovyi
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引用次数: 0

摘要

问题。在设计阶段对机器驱动类型的选择是一项复杂而多方面的任务,其正确的解决方案在很大程度上取决于其技术水平和操作质量。研究的目的是确定提高技术机械驱动的能源效率的方法,并开发一种选择驱动类型的算法。方法。系统分析使分析环境参数成为可能,其中适合使用一种或另一种类型的驱动器,以制定比较其应用效率的标准。自动控制方法的理论使建立驱动特性成为可能。机构理论和机器方法使得确定驱动器的质量、尺寸和能量参数成为可能。结果。考虑了提高工艺机械驱动器能源效率的主要措施,提出了一种选择驱动器类型的算法,并创建了一个表来比较驱动器的主要消费特性。已经确定了执行元件的电驱动是目前机电系统领域的主要驱动方式。它具有良好的控制,易于反馈组织,高效率和最佳的质量尺寸效率。创意。考虑最大数量的因素,提出了一种选择驱动类型的算法。提出了比较不同驱动类型效率的标准。给出了电气、液压、气动和机械驱动的有效应用领域及其极限输出参数。实用价值。该算法的应用减少了选择驱动类型的时间。在未来,有必要根据其元件和电路解决方案的最新发展,补充现有的各种驱动器类型使用数据库,以制定比较各种类型驱动器的新标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ENERGY EFFICIENCY AND ALGORITHM FOR SELECTING DRIVES FOR TECHNOLOGICAL MACHINES
Problem. The choice of the machine drive type at the design stage is a complex and multifaceted task, the correct solution of which largely depends on its technical level and operational qualities. The aim of the study is to identify the ways to increase the energy efficiency of technological machine drives and to develop an algorithm for selecting the drive type. Methodology. System analysis made it possible to analyze the environmental parameters in which it is appropriate to use a drive of one type or another, to develop criteria for comparing their application efficiency. The theory of automatic control methods made it possible to establish the drive characteristics. The theory of mechanisms and machines methods made it possible to determine the mass, size, and energy parameters of drives. Results. The main actions to improve the energy efficiency of technological machine drives are considered, an algorithm for choosing the drive type has been developed and a table has been created to compare the main consumer properties of drives. It has been established that the electrical drive of the executive elements is currently the main one in the area of mechatronic systems. It provides good control, easy feedback organization, high efficiency, and the best mass-dimensional efficiency. Originality. Considering the maximum number of factors, an algorithm for choosing the drive type has been developed. Criteria for comparing the efficiency of different drive types are proposed. Areas of effective application of electrical, hydraulic, pneumatic, and mechanical drives and their limiting output parameters are given. Practical value. Application of the developed algorithm reduces the time for selecting the drive type. In the future, it is necessary to supplement the existing database on the use of various drive types, based on the latest developments of their elements and circuit solutions, to develop new criteria for comparing drives of various types.
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