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Dosaranian-Moghadam, Mohamad
- Tracking Mobile User through Adaptive Beamforming for Wireless Cellular Networks in a 2D Urban Environment
Abstract Views :432 |
PDF Views:105
Authors
Affiliations
1 Department of Electrical Engineering, Qazvin Branch, Islamic Azad University, Qazvin, IR
2 Department of Electrical Engineering, University of Shahed, Tehran, IR
1 Department of Electrical Engineering, Qazvin Branch, Islamic Azad University, Qazvin, IR
2 Department of Electrical Engineering, University of Shahed, Tehran, IR
Source
Indian Journal of Science and Technology, Vol 5, No 4 (2012), Pagination: 2569-2577Abstract
The interference reduction capability of array antennas and the power control (PC) algorithms have been considered separately as means to increase the capacity in wireless communication networks. The capability of the smart antenna systems to track the user with the main lobe and interference with the nulls creates a significant impact on the current and future wireless sensor networks. In this paper, we use constrained least mean square (CLMS) and conjugate gradient adaptive beam-forming (CGBF) algorithms for narrowband adaptive beam-forming for tracking mobile user in a 2D urban environment without using PC algorithm. The CLMS algorithm is capable of efficiently adapting according to the environment and able to permanently maintain the chosen frequency response in the look direction while minimizing the output power of the array. In addition, with the CGBF algorithm, the desired users' signal in an arbitrary path is passed and the inter-path interference (IPI) is canceled in other paths in each RAKE finger. The adaptability of the algorithms is closely observed for uniformly spaced linear array. Also in this paper, we present switched-beam (SB) technique. In the SB technique by using a number of fixed, independent, or directional antennas we increase the uplink capacity of the wireless systems. Simulation results indicate that the SB technique is able to considerably increase the signal to interference plus noise ratio (SINR) of mobile user in comparison with other algorithms. In addition, we observe that the SINR in the CLMS algorithm is lower than the CGBF algorithm. Finally, we discuss perfect power control and path loss parameter in urban environments and their effects on system capacity by simulations.Keywords
Antenna, Switched-beam, Power Control, Urban Signal Propagation Simulator, Wireless Cellular NetworkReferences
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- Dosaranian-Moghadam M, Bakhshi H and Dadashzadeh G (2010) Joint closed-loop power control and adaptive beamforming for wireless networks with antenna arrays in a 2D urban environment. J. Wireless Sensor Network. 2(11), 869-878.
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- Joint Adaptive Beamforming and Perfect Power Control in Wireless Networks over Power Control Error
Abstract Views :368 |
PDF Views:100
Authors
Affiliations
1 Department of Electrical Engineering, Qazvin Branch, Islamic Azad University, Qazvin, IR
1 Department of Electrical Engineering, Qazvin Branch, Islamic Azad University, Qazvin, IR
Source
Indian Journal of Science and Technology, Vol 5, No 10 (2012), Pagination: 3390-3402Abstract
In this paper, we use joint perfect power control (PPC) and adaptive beamforming algorithms as constrained least mean square (CLMS) and conjugate gradient adaptive beamforming (CGBF) in a 2D urban environment. The CLMS algorithm is capable of efficiently adapting according to the environment and able to permanently maintain the chosen frequency response in the look direction while minimizing the output power of the array. In addition, with the CGBF algorithm, the desired users' signal in an arbitrary path is passed and the inter-path interference (IPI) is canceled in other paths in each RAKE finger. The adaptability of the algorithms is closely observed for uniformly spaced linear array. In addition, in this paper, we present switched-beam (SB) technique. In the SB technique by using a number of fixed, independent, or directional antennas we increase the uplink capacity of the wireless systems. Also, we study an analytical approach for the evaluation of the impact of power control error (PCE) on wireless communication systems. Simulation results indicate that the SB technique is able to considerably increase the signal to interference plus noise ratio (SINR) of desired user in comparison with other algorithms. In addition, we observe that the SINR in the CLMS algorithm is lower than the CGBF algorithm. Finally, we discuss two parameters of the PCE and path-loss exponent and their effects on capacity of the system via some computer.Keywords
Adaptive Beamforming, Power Control, Wireless NetworksReferences
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