Estimation of Achievable Rates in Additive Gaussian Mixture Noise Channels

被引:0
|
作者
Duc-Anh Le [1 ]
Vu, Hung V. [2 ]
Tran, Nghi H. [1 ]
Gursoy, Mustafa Cenk [3 ]
Tho Le-Ngoc [2 ]
机构
[1] Univ Akron, Dept Elect & Comp Engn, Akron, OH 44325 USA
[2] McGill Univ, Dept Elect & Comp Engn, Montreal, PQ, Canada
[3] Syracuse Univ, Dept Elect Engn & Comp Sci, Syracuse, NY 13244 USA
关键词
Gaussian mixture; Achievable rates; Gaussian input; Pulse amplitude modulation; CAPACITY; SYSTEMS;
D O I
10.1109/ICC.2016.7510799
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper details novel methods to accurately estimate the achievable rates of channels with additive Gaussian mixture (GM) noise. Attention is paid to a Gaussian input and discrete inputs. Such discrete inputs represent a wide range of signaling strategies and include the capacity-achieving input as a special case. At first, we propose a simple technique to calculate the GM noise entropy. Specifically, when the noise level is high, a lower bound on the integrand of the noise entropy is established and the noise entropy can be estimated in closed-form. In the low noise region, the piecewise-linear curve fitting (PWLCF) method is applied to calculate the noise entropy. It is then demonstrated this can be estimated in both regions with a predetermined accuracy. We then extend this result to calculate the output entropy and the achievable rate when the input is Gaussian distributed, which is shown to be asymptotically optimal. Next, we propose a simple PWLCF-based method to estimate the output entropy for a given discrete input. In particular, the output entropy is evaluated by examining the output in high and low regions of amplitude using a lower bound on the integrand of the output entropy and PWLCF, respectively. It is demonstrated that the output entropy, and consequently, the achievable rates, can be computed to achieve any desired accuracy level.
引用
收藏
页码:856 / 861
页数:6
相关论文
共 50 条
  • [41] Multipartite Entangled Codewords for Gaussian Channels with Additive Noise and Memory
    Lupo, C.
    Memarzadeh, L.
    Mancini, S.
    QUANTUM COMMUNICATION AND QUANTUM NETWORKING, 2010, 36 : 26 - 33
  • [42] Secrecy Capacity of Wiretap Channels with Additive Colored Gaussian Noise
    Fujita, Hachiro
    IEICE TRANSACTIONS ON FUNDAMENTALS OF ELECTRONICS COMMUNICATIONS AND COMPUTER SCIENCES, 2015, E98A (06) : 1276 - 1287
  • [43] Gaussian Mixture Noise Channels With Minimum and Peak Amplitude Constraints
    Ni, Zhengwei
    Motani, Mehul
    IEEE TRANSACTIONS ON COMMUNICATIONS, 2019, 67 (06) : 3954 - 3964
  • [44] On Gaussian Mixture Noise Channels with Minimum and Peak Amplitude Constraints
    Ni, Zhengwei
    Motani, Mehul
    2018 52ND ANNUAL CONFERENCE ON INFORMATION SCIENCES AND SYSTEMS (CISS), 2018,
  • [45] Robust Frequency Estimation Under Additive Mixture Noise
    Chen, Yuan
    Tian, Yulu
    Zhang, Dingfan
    Huang, Longting
    Xu, Jingxin
    CMC-COMPUTERS MATERIALS & CONTINUA, 2022, 72 (01): : 1671 - 1684
  • [46] DENSITY PARAMETER ESTIMATION FOR ADDITIVE CAUCHY-GAUSSIAN MIXTURE
    Chen, Yuan
    Kuruoglu, Ercan Engin
    So, Hing Cheung
    Huang, Long-Ting
    Wang, Wen-Qin
    2014 IEEE WORKSHOP ON STATISTICAL SIGNAL PROCESSING (SSP), 2014, : 197 - 200
  • [47] Achievable rates for the Gaussian quantum channel
    Harrington, J
    Preskill, J
    PHYSICAL REVIEW A, 2001, 64 (06) : 10
  • [48] Achievable rates for the Gaussian quantum channel
    Harrington, Jim
    Preskill, John
    Physical Review A. Atomic, Molecular, and Optical Physics, 2001, 64 (06): : 1 - 062301
  • [49] Achievable Rates of Buffer-Aided Full-Duplex Gaussian Relay Channels
    El Shafie, Ahmed
    Sultan, Ahmed
    Krikidis, DanN'S
    Al-Dhahir, Naofal
    Hamila, Ridha
    IEEE ACCESS, 2017, 5 : 23776 - 23791
  • [50] Duality, achievable rates, and sum-rate capacity of Gaussian MIMO broadcast channels
    Vishwanath, S
    Jindal, N
    Goldsmith, AG
    IEEE TRANSACTIONS ON INFORMATION THEORY, 2003, 49 (10) : 2658 - 2668