Receive Antenna Gain of Uniform Linear Arrays of Isotrops

被引:0
|
作者
Ivrlac, Michel T. [1 ]
Nossek, Josef A. [1 ]
机构
[1] Tech Univ Munich, Inst Circuit Theory & Signal Proc, D-80333 Munich, Germany
来源
2009 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS, VOLS 1-8 | 2009年
关键词
D O I
暂无
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
The receive antenna gain of an antenna array critically depends on the receiver noise covariance. Receiver noise essentially originates from two sources: the receive low-noise amplifiers (LNA), and background radiation that is received by the array. In case that the LNAs are the sole origin of noise, it is state of the art to argue that the receiver noise is spatially uncorrelated, for noise originates in components of physically separate LNAs. However, this argument ignores coupling between antennas due to their spatial proximity, and moreover the coupling introduced by the impedance matching network which is located between the antenna outputs and the LNA inputs. Because of these coupling effects, the receiver noise is usually spatially correlated even when independent LNAs are the sole source of noise in the system. The noise covariance, depends on the following four factors: 1) antenna spacing of the array, 2) properties of the impedance matching network, 3) noise-resistance of the LNAs, 4) intensity of received background noise with respect to noise generated by the LNAs. Taking these issues into account, we derive, in this paper, the receive antenna gain of a uniform linear antenna array of isotrops in closed form. It turns out that the receive antenna gain can become much larger than the number of antennas. For the case of low noise-resistance, and low relative intensity of received background noise, we show that the receive antenna gain can even grow exponentially with the number of antennas. These results are exciting, because they imply that the performance of communication systems which use multiple receive antennas can be much better than previously reported.
引用
收藏
页码:3482 / 3487
页数:6
相关论文
共 50 条
  • [2] Transmit and Receive Array Gain Df UnifDrm Linear Arrays Df IsDtrDps
    Ivrlac, Miccel T.
    Nossek, Josef A.
    2009 IEEE SARNOFF SYMPOSIUM, CONFERENCE PROCEEDINGS, 2009, : 164 - 169
  • [3] OVERSAMPLING TRANSMIT AND RECEIVE ANTENNA ARRAYS
    Yeang, Chen-Pang
    Wornell, Gregory W.
    Zheng, Lizhong
    2010 IEEE INTERNATIONAL CONFERENCE ON ACOUSTICS, SPEECH, AND SIGNAL PROCESSING, 2010, : 2522 - 2525
  • [4] DENSE TRANSMIT AND RECEIVE ANTENNA ARRAYS
    Yeang, C. -P.
    Wornell, G. W.
    Zheng, L.
    Krieger, J.
    2010 IEEE ANTENNAS AND PROPAGATION SOCIETY INTERNATIONAL SYMPOSIUM, 2010,
  • [5] Far-field multicast beamforming for uniform linear antenna arrays
    Karipidis, Eleftherios
    Sidiropoulos, Nicholas D.
    Luo, Zhi-Quan
    IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2007, 55 (10) : 4916 - 4927
  • [6] Deterministic Measurement Procedures for Diagnosis of Massive Uniform Linear Antenna Arrays
    Mokhtar, M.
    Hamila, R.
    Bajwa, W. U.
    Al-Dhahir, N.
    2016 IEEE GLOBAL CONFERENCE ON SIGNAL AND INFORMATION PROCESSING (GLOBALSIP), 2016, : 1388 - 1392
  • [7] Evaluation of directivity and gain for time-modulated linear antenna arrays
    Yang, SW
    Gan, YB
    Tan, PK
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2004, 42 (02) : 167 - 171
  • [8] MAXIMUM GAIN LINEAR ANTENNA-ARRAYS WITH CURRENT AMPLITUDE LIMITATION
    MINTZ, MY
    PRILEPSKY, ED
    RADIOTEKHNIKA I ELEKTRONIKA, 1987, 32 (06): : 1152 - 1156
  • [9] DOA Using Uniform/Nonuniform Linear and Uniform Circular Antenna Arrays with Bayesian Compressive Sensing
    Jouny, Ismail
    2017 IEEE 8TH ANNUAL UBIQUITOUS COMPUTING, ELECTRONICS AND MOBILE COMMUNICATION CONFERENCE (UEMCON), 2017, : 158 - 161
  • [10] GAIN OF PHASED ANTENNA ARRAYS
    KLASSEN, VI
    MERKULOV, VV
    RADIOTEKHNIKA I ELEKTRONIKA, 1973, 18 (10): : 2161 - 2165