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丹佛通用显微分光辐射度计(DUM)。二、辐射度测量的计算机配置与模块化编程。

The Denver universal microspectroradiometer (DUM). II. Computer configuration and modular programming for radiometry.

作者信息

Galbraith W, Geyer S B, David G B

出版信息

J Microsc. 1975 Dec;105(3):237-64. doi: 10.1111/j.1365-2818.1975.tb04057.x.

Abstract

This paper describes and discusses for microscopists and spectroscopists the choice of computer equipment and the design of programs used in the Denver Universal Microspectroradiometer (DUM). This instrument is an accurate computerized photon-counting microspectrophotometer, microspectrofluorimeter and microrefractometer. The computer is used to control the operation of the system, to acquire radiometric data of various kinds, and to reduce, analyse and output the data in a readily usable form. Since the radiometer was designed to carry out many kinds of measurements in a variety of micro- and macroscopic specimens, and since different methods of microscopy or spectroscopy have to be combined in various ways fro the study of any one specimen, no single master-program could fulfill efficiently all foreseeable requirements. Therefore, the programming developed is interactive, modular, hierarchical and hybrid. Modular interactive programming makes it possible for almost any kind of main program, applicable to almost any kind of measurement, to be assembled quickly from a collection of hierarchical subroutines. Main programs are short and composed mainly of Fortran statements calling subroutines; subroutines, in turn, automatically call other subroutines over many levels. The subroutines are independently written and optimized for maximum operational efficiency in the computer system used, or for maximum ease of transfer to other systems. This approach to programming enables someone unfamiliar with computer languages to operate the radiometric system from the console of the CRT terminal. The writing of new main programs, by linking groups of existing subroutines, requires only a minimum acquaintance with Fortran; only the writing and revision of subroutines requires programming experience. Differences and similarities in the method of computer operation between the present system and other computerized radiometers are briefly discussed.

摘要

本文为显微镜学家和光谱学家描述并讨论了丹佛通用显微分光辐射计(DUM)中计算机设备的选择及所用程序的设计。该仪器是一台精确的计算机化光子计数显微分光光度计、显微荧光计和微折射计。计算机用于控制系统的运行,采集各类辐射测量数据,并以易于使用的形式对数据进行简化、分析和输出。由于该辐射计旨在对各种微观和宏观样本进行多种测量,且由于研究任何一个样本时都必须以各种方式组合不同的显微镜或光谱学方法,所以没有一个单一的主程序能够高效满足所有可预见的需求。因此,所开发的程序是交互式、模块化、分层式和混合式的。模块化交互式编程使得几乎任何一种适用于几乎任何一种测量的主程序都能够从一组分层子程序中快速组装而成。主程序简短,主要由调用子程序的Fortran语句组成;子程序则依次自动调用许多层次上的其他子程序。这些子程序是独立编写的,并针对所使用的计算机系统进行了优化以实现最高的运行效率,或者为了便于转移到其他系统而进行了优化。这种编程方法使不熟悉计算机语言的人能够从阴极射线管(CRT)终端的控制台操作辐射测量系统。通过链接现有的子程序组来编写新的主程序,只需要对Fortran有最低限度的了解;只有编写和修改子程序才需要编程经验。本文还简要讨论了本系统与其他计算机化辐射计在计算机操作方法上的异同。

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