The Inverse Nakagami-m Distribution: A Novel Approach in Reliability

被引:30
|
作者
Louzada, Francisco [1 ]
Ramos, Pedro Luiz [1 ]
Nascimento, Diego [1 ]
机构
[1] Univ Sao Paulo, Inst Math Sci & & Comp, BR-13566590 Sao Carlos, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
Bias correction; censored data; inverse Nakagami-m; (INK) distribution; maximum-likelihood estimators (MLEs); Nakagami-m (NK) distribution; reliability; M FADING PARAMETER; WEIBULL DISTRIBUTION; INFERENCE; SYSTEMS;
D O I
10.1109/TR.2018.2829721
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
In the paper, the inverse Nakagami-m (NK) distribution is proposed. This distribution is the reciprocal of the NK-model that plays an important role in the general area of the communications engineering and reliability system. The proposed model is useful to describe devices that are subjected to high stress, providing high failure rate after a short repair time. An account of mathematical properties is presented such as the rth moment, mean, variance, rth central moment, survival properties, and Shannon's entropy. The maximum-likelihood estimators are explored under complete and censored data, but a bias correction was applied to the order O(n-2) for obtaining nearly unbiased performance. An efficient closed-form maximum a posteriori (MAP) estimator was also proposed. A simulation study compares the performance of the estimators with a clear advantage for the closed-form MAP one. Finally, we illustrate the new distribution fitting on three real datasets.
引用
收藏
页码:1030 / 1042
页数:13
相关论文
共 50 条
  • [31] Efficacy of Nakagami-m Distribution Function for Deriving Unit Hydrograph
    Rai, R. K.
    Sarkar, S.
    Upadhyay, Alka
    Singh, V. P.
    WATER RESOURCES MANAGEMENT, 2010, 24 (03) : 563 - 575
  • [32] Performance Investigation of Nakagami-m Distribution to Derive Flood Hydrograph by Genetic Algorithm Optimization Approach
    Sarkar, S.
    Goel, N. K.
    Mathur, B. S.
    JOURNAL OF HYDROLOGIC ENGINEERING, 2010, 15 (08) : 658 - 666
  • [33] Novel Nakagami-m parameter estimator for noisy channel samples
    Chen, YF
    Beaulieu, NC
    Tellambura, C
    IEEE COMMUNICATIONS LETTERS, 2005, 9 (05) : 417 - 419
  • [34] A New Nakagami-m Inverse CDF Approximation Based on the Use of Genetic Algorithm
    Mehmet Bilim
    Ibrahim Develi
    Wireless Personal Communications, 2015, 83 : 2279 - 2287
  • [35] A New Nakagami-m Inverse CDF Approximation Based on the Use of Genetic Algorithm
    Bilim, Mehmet
    Develi, Ibrahim
    WIRELESS PERSONAL COMMUNICATIONS, 2015, 83 (03) : 2279 - 2287
  • [36] Nakagami-m distribution of RSSI in shadowing pathloss model for indoor localization
    Ahmed, Afaz Uddin
    Arablouei, Reza
    de Hoog, Frank
    Kusy, Branislav
    Bergmann, Neil
    Jurdak, Raja
    2019 IEEE SENSORS APPLICATIONS SYMPOSIUM (SAS), 2019,
  • [37] Approximating distribution of symbol error rates in Nakagami-m fading channels
    Kwan, R.
    Leung, C.
    ELECTRONICS LETTERS, 2006, 42 (13) : 766 - 767
  • [38] Nakagami-m Phase-Envelope Joint Distribution: A New Model
    Yacoub, Michel Daoud
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2010, 59 (03) : 1552 - 1557
  • [39] Physical layer security for IoT over Nakagami-m and mixed Rayleigh–Nakagami-m fading channels
    Parmila Devi
    Manoranjan Rai Bharti
    Wireless Networks, 2023, 29 : 3479 - 3491
  • [40] Channel reliability metric for Nakagami-m fading without channel state information
    Shaheem, A
    Zepernick, HJ
    Caldera, M
    GLOBECOM '05: IEEE Global Telecommunications Conference, Vols 1-6: DISCOVERY PAST AND FUTURE, 2005, : 397 - 402