Development of a novel hybrid switch device and application to a solid-state transfer switch

被引:10
|
作者
Takeda, M
Yamamoto, H
Aritsuka, T
Kamiyama, I
Reed, GF
机构
关键词
solid-state transfer switch; SSTS; hybrid switch; thyristor; power quality; custom power;
D O I
10.1109/PESW.1999.747368
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Numerous industrial and commercial operations suffer from various types of outages and service interruptions which can cost significant financial loss per incident based on process down-time, lost production, idle work forces, and other factors. The types of interruptions which are experienced can generally be classified as power quality related problems caused by voltage sags and swells, lightning strikes, and other system related disturbances, In many instances, the use of a Solid-State Transfer Switch can be one of the most cost-effective solutions for these power quality problems. The SSTS, which essentially consists of a pair of thyristor switch devices, enables seamless transfer of energy from a primary source to an alternate source in order to avoid service interruption upon a deficiency in power quality. As a result, power quality problems become transparent to the critical or sensitive customer loads that the SSTS protects. However, a thyristor is not a pure conductor and raises some issues in terms of loss consumption and cooling. In a conventional SSTS, line current flows in the thyristors continuously, causing a great deal of loss consumption and element heating during normal operation. As a result, relatively large cooling equipment is required which imposes additional operating costs on the user in order to maintain thyristor cooling. It also results in reduced efficiency and lower reliability in the device.
引用
收藏
页码:1151 / 1156
页数:6
相关论文
共 50 条
  • [21] Development of a Novel 30 kV Solid-state Switch for Damped Oscillating Voltage Testing System
    Hou, Zhe
    Li, Hongjie
    Li, Jing
    Ji, Shengchang
    Huang, Chenxi
    JOURNAL OF POWER ELECTRONICS, 2016, 16 (02) : 786 - 797
  • [22] Development of Octal Solid State Switch HMC for Space Application
    Sharma, Nirupam
    Sarkar, Priya
    Agarwal, Anup Kr.
    Singh, Anju
    Andhiwal, Ajay
    Singh, Kamaljeet
    Journal of Spacecraft Technology, 2023, 34 (01): : 43 - 49
  • [23] Development of solid-state high voltage switch for pulsed gas laser
    Yang Y.
    Zheng Y.
    Zhu Z.
    Sun K.
    Tang H.
    Tan R.
    Su X.
    Hongwai yu Jiguang Gongcheng/Infrared and Laser Engineering, 2020, 49 (11):
  • [24] SOLID-STATE SWITCH OFFERS FAST INTERRUPT
    DRUMMOND, GN
    EDN, 1986, 31 (13) : 226 - &
  • [25] Improved solid-state DBD for picosecond switch
    Zhang, F
    Yu, W
    Li, CF
    Shi, L
    Sun, XW
    MODERN PHYSICS LETTERS B, 2005, 19 (9-10): : 459 - 468
  • [26] SOLID-STATE SWITCH BLENDS POWER WITH CONTROL
    LEE, M
    ELECTRONIC PRODUCTS MAGAZINE, 1987, 30 (06): : 41 - 45
  • [27] SOLID-STATE TIMING CIRCUIT FOR STEPPING SWITCH
    WITZ, RL
    STEGMAN, EC
    AGRICULTURAL ENGINEERING, 1970, 51 (05): : 299 - &
  • [28] SOLID-STATE SWITCH WORKS LIKE ELECTROMECHANICAL
    BALMER, T
    DESIGN NEWS, 1973, 28 (06) : 77 - 77
  • [29] A SOLID-STATE ELECTRONIC SWITCH FOR AUDITORY RESEARCH
    OLSON, RE
    LUDWIG, H
    IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1965, BM12 (3-4) : 193 - &
  • [30] Solid-state organic electronic wettability switch
    Isaksson, J
    Tengstedt, C
    Fahlman, M
    Robinson, N
    Berggren, M
    ADVANCED MATERIALS, 2004, 16 (04) : 316 - +