| J. Luo, J.R. Zeidler, and S. McLaughlin, "Performance Analysis of Compact Antenna Arrays with MRC in Correlated Nakagami Fading Channels," IEEE Trans. Veh. Technol., vol. 50, pp 267-277, Jan. 2001. |
....resolution. 2.6 Relationship to Other Models The physical model (5) can represent any linear channel and can account for many particular scenarios that have been studied by other researchers. For example, effects of mutual coupling can be incorporated by multiplying H with a coupling matrix [9, 10]. This can be readily captured by the physical model (5) by including an appropriate coupling spreading function with G( R ; T ) in a multiplicative fashion or by imposing appropriate statistics on G( R ; T ) Similarly, several recent studies have used the ring model for scatterers [11] ....
J. Luo, J. R. Zeidler, and S. McLaughlin, "Performance analysis of compact antenna arrays with MRC in correlated Nakagami fading channels," IEEE Trans. Vehic. Tech., vol. 50, pp. 267--277, Jan. 2001.
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J. Luo, J.R. Zeidler, and S. McLaughlin, "Performance Analysis of Compact Antenna Arrays with MRC in Correlated Nakagami Fading Channels," IEEE Trans. Veh. Technol., vol. 50, pp 267-277, Jan. 2001.
No context found.
J. Luo, J. Zeidler, and S. McLaughlin, "Performance analysis of compact antenna arrays with MRC in correlated Nakagami fading," IEEE Trans. Veh. Technol., vol. 50, pp. 267--277, Jan. 2001.
No context found.
J. Luo, J. Zeidler, S. McLaughlin, "Performance analysis of compact antenna arrays with MRC in correlated Nakagami fading," IEEE Trans. Vehicular Technology, vol. 50, pp. 267277, Jan. 2001.
No context found.
J. Luo, J.R. Zeidler, and S. McLaughlin, "Performance analysis of compact antenna arrays with MRC in correlated Nakagami fading channels," IEEE Trans. Vehicular Technology, vol. 50, no. 1, pp. 267--277, January 2001.
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