DocumentCode
3512320
Title
Channel estimation with hard limiter receiver as key technology for low cost wireless systems
Author
Althaus, Frank ; Wittneben, Armin
Author_Institution
Commun. Technol. Laboratory, ETHZ, Zurich, Switzerland
Volume
5
fYear
2003
fDate
11-15 May 2003
Firstpage
3256
Abstract
Future wireless indoor network applications require technologies that allow high data rate transmission in multipath propagation environment. The acceptance of new technologies will depend essentially on the expense of its realization. A key technology for link level cost reduction is the use of hard (amplitude) limiting receiver structures that substantially save the costs for the analogue domain of the receivers [J.P. Fonseka, 1996][A. Wittneben and U. Dettmar, 1997]. Technologies suited for multipath propagation, such as ML based detection or smart antennas training, require the knowledge of the complex channel impulse response (CIR) [J.G. Proakis, 1995][M. Kuhn, 2002]. A method on how to estimate the complex CIR in case of a hard limited receiver structure is needed. In this paper, an estimation method is presented that allows an estimation of the complex CIR on basis of phase samples. The new estimation technique is a two level approach, which exploits the finite-state nature of the transmission system. With the help of an appropriate training sequence an estimate of the desired phase and amplitude is performed. The second level procedure performs a subspace approach to estimate the CIR, which yields a well treatable overdetermined linear equation system. Simulation results for a GMSK transmission system highlight the suitability of this estimation method.
Keywords
channel estimation; indoor radio; limiters; minimum shift keying; radio receivers; Gaussian filtered minimum shift keying transmission; channel estimation; complex channel impulse response; finite-state nature; hard limiter receiver; high data rate communication; linear equation system; low cost wireless systems; Adaptive arrays; Antennas and propagation; Bluetooth; Channel estimation; Costs; Dynamic range; Energy consumption; Intersymbol interference; Maximum likelihood detection; Phase estimation;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications, 2003. ICC '03. IEEE International Conference on
Print_ISBN
0-7803-7802-4
Type
conf
DOI
10.1109/ICC.2003.1204041
Filename
1204041
Link To Document