(电子行业企业管理)探析现代电力电子及电源技术的发展精品

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1、探析现代电力电子及电源技术的发展现代电源技术是应用电力电子半导体器件,综合自动控制、计算机(微处理器)技术和电磁技术的多学科边缘交又技术。在各种高质量、高效、高可靠性的电源中起关键作用,是现代电力电子技术的具 体应用。Modern power technology is the application of power electronic semiconductor devices and integrated automatic control, computer (microprocessor) and electromagnetic technology of multidiscipl

2、inary edge in technology. In all kinds of high quality, high efficiency, high reliability of power supply plays a key role, is the concrete application of modern power electronic technology.当前,电力电子作为节能、节才、自动化、智能化、机电一体化的基础,正朝着应用技术高频化、硬件结构模块化、产品性能绿色化的方向发展。在不远的将来,电力电子技术将使电源技术更加成熟、经 济、实用,实现高效率和高品质用电相结合。

3、Current, power electronics as an energy-saving, section, automation, intelligent, electromechanical integration, the basis of the application technology is moving in high-frequency, modular hardware structure and the direction of green product performance. In the near future, power electronic techno

4、logy will enable power technology more mature, economic, practical, achieve high efficiency and high quality.1. 电力电子技术的发展1. The development of power electronics technology现代电力电子技术的发展方向,是从以低频技术处理问题为主的传统电力电子学,向以高频技术处理问题为主的现代电力电子学方向转变。电力电子技术起始于五十年代末六十年代初的硅整流器件,其发展先后经历了整流器时代、逆变器时代和变频器时代,并促进了电力电子技术在许多新领域

5、的应用。八十年代末期和九十年代初期发展起来的、以功率MOSFET和IGBT为代表的、集高频、高压和大电流于一身的功率半导体复合器件,表明传统电力电子技术已经进入现代电力电子时代。The development direction of modern power electronic technology, is given priority to with low frequency technology deal with the problem of traditional power electronics, to give priority to with high frequency

6、 technology deal with the problem of modern power electronics. Power electronic technology began in the early 50 s, 60 s of the silicon rectifier device, its development has experienced the era of era of rectifier and inverter and converter, and promoted the power electronic technology in many new a

7、reas of application. Developed in the late eighty s and early ninety s, represented by power MOSFET and IGBT and high frequency, high voltage and large current of power semiconductor compound device, show that traditional power electronic technology has entered the era of modern power electronics.1.

8、1 整流器时代1.1 the age of rectifier大功率的工业用电由工频(50Hz)交流发电机提供,但是大约20%的电能是以直流形式消费的,其中最典型的是电解(有色金属和化工原料需要直流电解)、牵引(电气机车、电传动的内燃机车、地铁机车、城市无轨电车等)和直流传动(轧钢、造纸等)三大领域。大功率硅整流器能够高效率地把工频交流电转变为直流电,因此在六十年代和七十年代,大功率硅整流管和晶闸管的开发与应用得以很大发展。当时国内曾经掀起了-股各地大办硅整流器厂的热潮,目前全国大大小小的制造硅整流器的半导体厂家就是那时的产物。High-power industrial power is pr

9、ovided by (50 hz) power frequency ac generators, but about 20% of electricity consumption in the form of dc, one of the most typical is the electrolysis (non-ferrous metal and chemical raw materials need to dc solution), traction, electric scooter, electric drive the internal combustion engine car c

10、ity, metro locomotives, trolley buses, etc.) and dc transmission (rolling, papermaking, etc.) the three areas. High-power silicon rectifier can effectively put the alternating current into direct current (dc) power frequency, therefore in the 60 s and seventy s, the development and application of hi

11、gh power silicon rectifier and brake pipe to great development. Was raised - used to domestic DaBan silicon rectifier plant around the boom, at present the national greatly small manufacturing silicon rectifier semiconductor manufacturers is the product of at that time.1.2 逆变器时代1.2 inverter era七十年代出

12、现了世界范围的能源危机,交流电机变频惆速因节能效果显著而迅速发展。变频调速的关键技术是将直流电逆变为0100Hz的交流电。在七十年代到八十年代,随着变频调速装置的普及,大功率逆变用的晶闸管、巨型功率晶体管(GTR)和门极可关断晶闸管(GT0)成为当时电力电子器件的主角。类似的应用还包括高压直流输出,静止式无功功率动态补偿等。这时的电力电子技术已经能够实现整流和逆变,但工作频率较低,仅局限在中低频范围内。Appeared in the seventy s a worldwide energy crisis, the ac motor variable frequency Radcliffe sp

13、eed rapid development because of the energy saving effect is remarkable. The key technology of variable frequency speed regulation is to direct current (dc) of 0 100 hz ac inverter. In the seventy s and seventy s, with the popularity of variable frequency speed regulating device, power inverter with

14、 thyristor, giant transistor (GTR) power and gate turn off thyristor (GT0) was cast in the role of power electronics device. Similar applications include high voltage dc output, static reactive power dynamic compensation etc. At this time of the power electronic technology has been able to realize r

15、ectifier and inverter, but working frequency is low, limited in the low-frequency range.1.3 变频器时代1.3 inverter era进入八十年代,大规模和超大规模集成电路技术的迅猛发展,为现代电力电子技术的发展奠定了基础。将集成电路技术的精细加工技术和高压大电流技术有机结合,出现了一批全新的全控型功率器件、首先是功率M0SFET的问世,导致了中小功率电源向高频化发展,而后绝缘门极双极晶体管(IGBT)的出现,又为大中型功率电源向高频发展带来机遇。MOSFET和IGBT的相继问世,是传统的电力电子向现代

16、电力电子转化的标志。据统计,到1995年底,功率M0SFET和GTR在功率半导体器件市场上已达到平分秋色的地步,而用IGBT代替GTR在电力电子领域巳成定论。新型器件的发展不仅为交流电机变频调速提供了较高的频率,使其性能更加完善可靠,而且使现代电子技术不断向高频化发展,为用电设备的高效节材节能,实现小型轻量化,机电一体化和智能化提供了重要的技术基础。Into the eighty s, large scale and very large scale integrated circuit technology rapid development, laid the groundwork for the development of modern power electronic technology. Fine processing technology and integrated circuit technology will combine high voltage large current

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