Quality factor based transducer power gain expression

被引:0
|
作者
Sengul, Metin [1 ]
机构
[1] Istanbul Kultur Univ, Engn Fac, Elect & Elect Engn, Istanbul, Turkiye
关键词
Quality factor; Broadband matching; Ladder networks; Lossless networks; Narrowband matching; BAND; DESIGN;
D O I
10.1108/COMPEL-11-2022-0382
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
PurposeIn the literature, while designing broadband matching networks, transducer power gain (TPG) is used to measure the transferred power. Generally, in TPG expressions, load and back-end impedances of the matching network are used. This study aims to derive a new quality factor-based TPG expression. Design/methodology/approachIn deriving the new expression, narrowband L type-matching network design approach is used and the new expression in terms of back-end quality factor, load quality factor and output port quality factor is obtained. Then, a broadband-matching network design approach using the derived TPG expression is proposed. FindingsTwo broadband double-matching networks are designed by using the proposed design approach using the derived TPG expression. Performances of the designed-matching networks are compared with the performances of the matching networks designed by means of simplified real frequency technique which is a well-known technique in the literature, and it is shown that they are nearly the same. Originality/valueIn broadband-matching problems, generally an impedance-based TPG expression is used, and it must be satisfied by the designed broadband-matching networks. But, in the literature, there is no quality factor-based TPG expression that can be used in broadband-matching problems. So, this gap in the literature has been filled by this paper.
引用
收藏
页码:1554 / 1564
页数:11
相关论文
共 50 条
  • [31] Multiple Impact Factor Based Accuracy Analysis for Power Quality Disturbance Detection
    Yang, Zijing
    Hua, Haochen
    Cao, Junwei
    CSEE JOURNAL OF POWER AND ENERGY SYSTEMS, 2023, 9 (01): : 88 - 99
  • [32] Comprehensive Power Quality Control of DSTATCOM based on Electricity Price Penalty Factor
    Li, Langzi
    Yin, Xianggen
    Lai, Jinmu
    Wang, Zhen
    2018 INTERNATIONAL CONFERENCE ON POWER SYSTEM TECHNOLOGY (POWERCON), 2018, : 3981 - 3986
  • [33] Study on the capacity index of power service enterprises based on the service quality factor
    Zen Ming
    Zhou Wenyu
    Zhang Ting
    Cheng Qian
    2008 THIRD INTERNATIONAL CONFERENCE ON ELECTRIC UTILITY DEREGULATION AND RESTRUCTURING AND POWER TECHNOLOGIES, VOLS 1-6, 2008, : 2343 - 2346
  • [34] A new fuzzy-based representative quality power factor for nonsinusoidal situations
    Morsi, Walid G.
    El-Hawary, M. E.
    IEEE TRANSACTIONS ON POWER DELIVERY, 2008, 23 (02) : 930 - 936
  • [35] Ultrasound transducer quality factor control using coupled external electrical resonator
    Chen, Ching-Mei
    Choubey, Bhaskar
    2018 IEEE SENSORS, 2018, : 1648 - 1651
  • [36] An Improved Cascaded H-Bridge Based High Power Factor Converter with Enhanced Power Quality
    Katta, Suresh
    Jayaram, N.
    Rajesh, Jami
    Halder, Sukanta
    2022 IEEE INTERNATIONAL CONFERENCE ON POWER ELECTRONICS, DRIVES AND ENERGY SYSTEMS, PEDES, 2022,
  • [37] Implementation of Internet of Things based Solution of Universal Power Transducer
    Yakimov, Peter Ivanov
    Iovev, Atanas Nikolov
    Tuliev, Nikolay Todorov
    2017 XXVI INTERNATIONAL SCIENTIFIC CONFERENCE ELECTRONICS (ET), 2017,
  • [38] Acousto-Optical Transducer With Optomechanical Gain
    Huang, Ke
    Hossein-Zadeh, Mani
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2018, 30 (22) : 1960 - 1963
  • [39] A discussion on power factor, quality factor and efficiency of small antennas
    Best, Steven R.
    2007 IEEE ANTENNAS AND PROPAGATION SOCIETY INTERNATIONAL SYMPOSIUM, VOLS 1-12, 2007, : 2086 - 2089
  • [40] Steel mill tackles power quality and power factor problems
    Cooper Power Systems Technical Cent, Franksville, United States
    EC and M: Electrical Construction and Maintenance, 1996, 95 (09):