基于LabVIEW的环境试验室控制器的设计与开发

M. Murugan, L. Srikanth, V. Naidu
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引用次数: 4

摘要

高分子复合材料以其优越的比刚度和比强度性能成为航空航天领域最受欢迎的材料。然而,这些材料容易受到温度和湿度的综合影响。在环境试验室内对这两个参数进行监测和控制,在严格的公差范围内,在规定的时间内模拟材料的使用条件,是复合材料鉴定程序的重要组成部分。在CSIR-NAL的环境测试设施,迄今为止只能通过计算机获取数据,但控制活动需要操作员亲自移动以接近控制器并提供必要的输入更改。通过设计和实现基于LabVIEW的环境试验箱温度和湿度监测和控制软件,成功地解决了这些限制。该方法消除了现有数据采集和重传模块硬件的使用,进一步将控制器本身作为数据采集设备,通过LabVIEW软件实现数据采集、存储、检索和显示等控制和功能。此外,已经消除了操作员访问控制器的物理运动的需要。本文介绍了利用LabVIEW开发闭环控制算法和数据采集协议。LabView与iTool Modbus开放平台通信(OPC)服务器一起使用,用于监测和控制环境试验室的温度和湿度。创新和新颖的控制器使环境调节过程更加高效和成本效益。使用新开发的ETC实现的精度为温度±0.5°C,湿度为±1% RH,而旧控制器实现的精度为±2°C和±3% RH。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and development of LabVIEW based environmental test chamber controller
Polymer composite materials are the most sought after materials for aerospace applications in view of their superior specific stiffness and specific strength properties. However, these materials are susceptible to the combined effects of temperature and humidity. Monitoring and control of these two parameters in an environmental test chamber, within a close tolerance for a stipulated duration to simulate the service conditions on the material is an essential part of qualification procedure for composites. At the Environmental Test Facility of CSIR-NAL, hitherto only data acquisition was possible through the computer, but the control activity required the operator to move physically to access the controller and provide the necessary change in inputs. The limitations have been successfully addressed by the design and implementation of a LabVIEW based software for monitoring as well as control of temperature and humidity in the environmental test chamber. This approach has eliminated the use of the existing DAQ and retransmission module hardware and further the controller itself is used as a DAQ device facilitating the control and functionalities such as data acquisition, storage, retrieval and presentation through LabVIEW software. Further, the need for physical movement of the operator to access the controller has been eliminated. In this paper, the development of a closed loop control algorithm and data acquisition protocol using LabVIEW is presented. The LabView has been used with an iTool Modbus Open Platform Communication (OPC) server for monitoring and control of temperature & humidity in the environmental test chamber. The innovative and novel controller has made the environmental conditioning process more efficient and cost effective. The accuracy achieved using the newly developed ETC is ± 0.5°C for temperature and ± 1% RH in case of humidity vis-avis the accuracy of ± 2°C and ± 3% RH, achieved with the old controller.
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