外文翻译--- 高精度温度测量装置的设计
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1、附录 A Design of a High Precision Temperature Measurement System 1 Introduction Sensors are one of the most important elements used in many instrumentation circuits. They are used in many industrial applications and take a certain form of input (temperature, pressure, altitude, etc.) and convert it in
2、to readings that can be interpreted. Many types of sensors are nonlinear in nature from which a linear output is desired. There are many different sensors for temperature measurement and thermocouples are the most commonly used . They are preferred in industrial applications due to their low cost, w
3、ide operation range, fast response time and accurate when their peculiarities are understood. Thermocouples have also outputs nonlinearly related to temperature. Therefore, sensor modeling and linearization techniques are necessary. To solve the linearization problem of a sensor, there are generally
4、 two methods proposed. The first one requires nonlinear analog circuit and the second uses numerical methods that are computed by microprocessor or computer . Analog circuits are frequently used for improving the linearity of the sensor characteristics, which implies additional analog hardware and t
5、ypical problems associated to analog circuits such as temperature drift, gain and offset error. Using the second method, sensor nonlinearities can be compensated by means of arithmetic operations, if an accurate sensor model is available (direct computation of the polynomials), or use of a multidime
6、nsional look-up table. Direct computation of the polynomial method is more accurate but takes a long time for computation, while the look-up table method, though faster, is not very accurate .In recent years, application of ANNs has emerged as a promising area of research in the field of instrumenta
7、tion and measurement . It provides a neurocomputing approach for solving complex problems especially in nonlinear system modeling which the network itself is a nonlinear system. This is extremely useful when the area of interest is absolutely nonlinear including the experimental data that is used fo
8、r training. One of the most powerful uses of ANNs is in function approximation (curve fitting) . Interpolation based on ANN provides lower interpolation errors when compared with conventional numerical interpolation .In the work we present here, high precision temperature measurement system based on
9、 ANN approach is proposed. The calibrating data is obtained by Wavetek 9100 calibration unit that is necessary for the training and the testing phases of the ANN. The hardware and software parts of the system are integrated in a VI used for system operation and calibration. The ANN is matched to the
10、 calibrating data by providing a desired final error. The mean square error between calibration and the ANN modeled data is minimized in terms of the structure, number of layers, and number of neurons by the developed software. 2 System Hardware A thermocouple generates a voltage proportional to the
11、 measurement junction temperature at mV levels while the cold junction temperature is constant. In order to make an accurate measurement the cold junction temperature must be known. Figure 1(a) shows the block diagram of the temperature measurement system designed via an ANN in the operation phase.
12、It consists of a thermocouple (type E) exposed to a desired temperature, including signal conditioning circuit with 16-bit analog to digital converter (ADC) and Input/Output interface card interfacing with a computer. The designed signal conditioning circuit has a programmable gain instrumentation a
13、mplifier (PGA204BP) with the gain of 1, 10, 100 and 1000, a 16-bit ADC (AD976A), an AD595 monolithic thermocouple amplifier with cold junction compensation which is configured as a stand-alone Celsius thermometer and a 4 channel analog multiplexer (ADG529A) which select the thermocouple or output of
14、 Celsius thermometer. The AD976A is a high speed, low power 16-bit A/D converter that operates from a single 5V supply. This part contains a successive approximation, switched capacitor ADC, an internal 2.5V reference and a high speed parallel interface. Accuracy of the system depends directly on st
15、ep size of ADC. With a 10V inputs, one LSB of AD976A is 305V. When AD595 is used as a Celsius thermometer, the thermocouple is omitted, and the differential inputs are shunted together to common. In this mode, AD595 generate a voltage with a scale factor of 10mV/C and its output is used for cold jun
16、ction temperature data that the written software is used. Some important characteristics of the AD595 are: operation temperature range -55 to 125C; stability vs. temperature: 0.05C/C and sensitivity: 10mV/C. Output signal of PGA204BP is digitized by AD976A which its output is connected to the I/O in
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