On the Energy or Power Efficiency of a Linear System

被引:0
|
作者
Keel L.H. [1 ]
Bhattacharyya S.P. [2 ]
机构
[1] Department of Electrical & Computer Engineering, Tennessee State University, Nashville, 37209, TN
[2] Department of Electrical & Computer Engineering, Texas A&M University, College Station, 77843, TX
关键词
Energy; Energy Efficiency; Gain; Linear Systems; Power;
D O I
10.24084/repqj20.368
中图分类号
学科分类号
摘要
A linear time-invariant (LTI) system is usually characterized by its gains, which are ratios of various output and input signal magnitudes. When the main function of the system is energy conversion, one is more interested in the power or energy gain or loss between input and output terminals. Such a "gain" represents the efficiency of the system as an energy conversion device. In this paper, we show that the power or energy "gain" of an LTI system can be determined as a nonlinear function of three signal gains of the system. This results in an explicit formula for the power (energy) gain in terms of the system parameters. This can then be optimized over the design parameters to maximize the gain and thus the system energy efficiency. A detailed DC circuit example is included for illustration. The energy efficiency of an LTI system operating in a steady state in response to a sinusoidal signal is also determined. © 2022, European Association for the Development of Renewable Energy, Environment and Power Quality (EA4EPQ). All rights reserved.
引用
收藏
页码:564 / 568
页数:4
相关论文
共 50 条
  • [31] Improving Power Efficiency of OFDM based FSO System using Linear Companding Transform
    Selvi, M.
    2017 IEEE INTERNATIONAL CONFERENCE ON POWER, CONTROL, SIGNALS AND INSTRUMENTATION ENGINEERING (ICPCSI), 2017, : 2987 - 2992
  • [32] Linear Precoding to Optimize Throughput, Power Consumption and Energy Efficiency in MIMO Wireless Sensor Networks
    Liu, Yang
    Li, Jing
    IEEE TRANSACTIONS ON COMMUNICATIONS, 2018, 66 (05) : 2122 - 2136
  • [33] Profiling high performance dense linear algebra algorithms on multicore architectures for power and energy efficiency
    Ltaief, Hatem
    Luszczek, Piotr
    Dongarra, Jack
    COMPUTER SCIENCE-RESEARCH AND DEVELOPMENT, 2012, 27 (04): : 277 - 287
  • [34] Energy efficiency indicator system construction for thermal power plant and PTA industry
    Key Laboratory of Thermo-Fluid Science and Engineering of MOE, School of Energy and Power Engineering, Xi'an 710049, China
    Kung Cheng Je Wu Li Hsueh Pao, 2013, 2 (233-237):
  • [35] Energy Efficiency Analysis of U-Coil Wireless Power Transfer System
    Ye, Zhao-Hong
    Sun, Yue
    Dai, Xin
    Tang, Chun-Sen
    Wang, Zhi-Hui
    Su, Yu-Gang
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2016, 31 (07) : 4809 - 4817
  • [36] Matching efficiency of power source system for vehicle with energy accumulation hydrostatic drive
    Li, Xiang-Sheng
    Chang, Si-Qin
    Zhongguo Gonglu Xuebao/China Journal of Highway and Transport, 2007, 20 (01): : 118 - 122
  • [37] High efficiency contactless energy transfer system with power electronic resonant converter
    Moradewicz, A. J.
    Kazmierkowski, M. P.
    BULLETIN OF THE POLISH ACADEMY OF SCIENCES-TECHNICAL SCIENCES, 2009, 57 (04) : 375 - 381
  • [38] Fractional Converter for High Efficiency High Power Battery Energy Storage System
    Xue, Fei
    Yu, Ruiyang
    Huang, Alex
    2017 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2017, : 5144 - 5150
  • [39] Improving the Energy Efficiency of the Hydraulic Ash Removal System of a Thermal Power Plant
    Sokovnin O.M.
    Power Technology and Engineering, 2024, 57 (05) : 770 - 773
  • [40] WAYS TO INCREASE ENERGY EFFICIENCY IN THE POWER SYSTEM USING THE EXAMPLE OF THE REPUBLIC OF TAJIKISTAN
    Halimjanova, Munira
    Dettmann, Klaus-Dieter
    Schulz, Detlef
    Kaatz, Gesa
    Grumm, Florian
    Meyer, Marc Florian
    ECOSYSTEMS AND SUSTAINABLE DEVELOPMENT XI, 2017, 214 : 57 - 65