基于DSP+技术的核能谱测量系统的设计

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1、成都理工大学硕士学位论文基于DSP 技术的核能谱测量系统的设计姓名:庄景齐申请学位级别:硕士专业:辐射防护及环境保护指导教师:周建斌20100501摘 要 I基于基于 DSP 技术的核谱测量系统的设计技术的核谱测量系统的设计 作者介绍:庄景齐,女,1986 年 2 月出生,2007 年 9 月师从成都理工大学周建斌副教授,毕业于成都理工大学辐射防护及环境保护专业,并于 2010 年 6月获得硕士学位。 摘 要 摘 要 核能谱测量是进行物质成分分析与放射性测量的重要方法之一。随着电子技术、通信技术的发展,核能谱测量作为一种重要的测量方法也逐步渗透到了其他工业测量领域。如能谱测量用于测量石油测井中

2、岩层岩性密度。本论文以课题“模块式动态地层测试系统及 EILog 配套装备”为项目依托,详尽地阐述了基于 DSP 处理器的核谱测量系统的研制。 本文突出了核谱测量技术在石油测井中的应用,具有良好的应用前景和推广价值。 在核能谱测量技术中,通过对被研究对象的能谱的获取和分析可以直接或间接地获得物质的结构、组成元素的含量等许多重要信息。其工作原理是不同核素在衰变过程中,释放出的粒子或射线能量是不同的。探测器输出的电脉冲信号幅度与入射粒子或射线的能量成正比,通过测量脉冲信号的幅度,得到入射粒子或射线的能量。 本系统以美国德州仪器公司 TMS320F2809 DSP 为核心处理器,以内部集成的高速 1

3、2 位 ADC 作为多道脉冲幅度分析器的模数转换部分,对外部输入的核信号进行 A/D 转换,形成多道能谱。在本系统中,采用了 USB 通信方式,将处理器采集到的多道能谱数据上传到 PC 机中,利用 VC+6.0 完成 Windows系统下的能谱分析软件设计, 最终在能谱分析软件的控制命令下完成能谱测量、数据传输等功能。 系统硬件设计上, 重点介绍了以新型 TMS320F2809 DSP 为核心处理器的核谱测量系统的硬件电路设计,包括探测器选择、主放大电路、多道脉冲幅度分析器、TMS320F2809 处理器电路和 USB 接口电路。 系统软件设计上,分别介绍了基于 DSP 处理器的核谱采集软件和

4、基于计算机的核谱分析软件的编制。在核谱采集软件编制过程中,采用 C 语言完成了系统初始化、A/D 转换控制、DSP 图形窗口显示、Flash 程序的下载和 USB通信等模块。这样既提高了软件开发速度,又增加软件的维护和扩展。在核成都理工大学硕士学位论文 II谱分析软件编制过程中,采用 VC+6.0 语言完成,实现了核谱的实时显示、分析处理和文件操作等处理。 完成了系统软硬件设计后,对系统进行了实际测试。从测试结果来看,整个系统实现了 500KHz 的正弦波、1MHz 的三角波和137Cs 能谱的采集、实时显示与分析,达到了系统设计的预期目标。同时,完成了系统集成到中国石油集团测井有限公司的 E

5、ILog 系统中的初步测试,测试结果表明,系统能正确的完成能谱数据采集,并实时将能谱数据上传给监控软件。传输稳定可靠,系统运行无误。 关键词:DSP 数据采集 USB 能谱分析软件 摘 要 IIIDesign of Nuclear Spectrum Measurement System Based on DSP Technology Introduction of the author: ZhuangJingqi, female, was born in February 1986 whose tutor was Professor Zhou Jianbin. She graduated fr

6、om Chengdu University of Radiation and Environmental Protection major and was granted the Master Degree in June, 2010. Abstract Nuclear spectrum measurement is one of the important methods for material composition analysis and radioactivity measurements.With the development of electronic and communi

7、cation technology, nuclear spectrum measurement is also gradually penetrate into other areas of industrial measurement. Such as the spectrum measurement was used to measure the rock lithology density of the oil well logging .This paper bases on the project of “Modular Dynamic Formation Test System a

8、nd EILog accessory equipment“, which comprehensively description the nuclear spectrum measurement system based on DSP. This paper prominent nuclear spectrum measurement technology application in oil well logging, and has a good application prospect and popularize value. In the nuclear spectrum measu

9、rement technique, based on the spectrum of the objects of acquisition and analysis can be obtained directly or indirectly structure and composition of the substance elements and many other important information. Its working principle is nuclides in the process of decay, the releases of particles or

10、ray energy is different. Detector output electrical pulse signal amplitude is proportional to the energy of incident particle or ray, by measuring the pulse amplitude, get the energy of incident particles or rays. The system uses Texas Instruments TMS320F2809 DSP as core processor, it uses high-spee

11、d 12bit ADC of internal integration as a multi-channel pulse amplitude analyzer ADC part, geting the external input nuclear signals for A/D convertion, and finally forming the multi-channel spectrum. In this system, USB communication method is used, the multi-channel spectrum data which is collected

12、 by the processor ,through the USB upload to the PC. Using VC6.0 complete the PC spectrum analysis software design, and under the spectrum analysis software system 成都理工大学硕士学位论文 IVcontrol ,the system complete the energy spectrum measurement, data transmission and other functions. In the system hardwa

13、re design, this paper highlights a new TMS320F2809 DSP core processor for the nuclear spectrum measurement system, the system including probe selection, the main amplifier circuit, multi-channel analyzer, TMS320F2809 processor circuit and the USB interface circuit . In the system software design, in

14、troduced the nuclear spectrum acquisition software based on the DSP processor and the nuclear spectrum analysis software based on computer. In the nuclear spectrum acquisition software compilation process, using C language completed system initialization, A/D conversion control, DSP graphical window

15、 display, Flash program download and USB communication module. This not only improves the speed of software development, but also increase the software maintenance and expansion. In nuclear spectrum analysis software establishment process, using VC + +6.0 language achieved the nuclear spectrum real-

16、time display, analysis processing and document manipulation treatment. After the completion of the system hardware and software design, the system was actually tested. From the test results, the system realizes 500KHz sine wave, 1MHz triangular wave and 137Cs spectrum of acquisition, real-time display and analysis, the system design was achieved to the expected goal. Meanwhile, the system is completed the initial testing which intergrated by the EILog system of Petrochina Logging Tech

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