Ijeee v1i1 05

Page 1

IJEEE, Vol. 1, Issue 1 (Jan-Feb 2014)

e-ISSN: 1694-2310 | p-ISSN: 1694-2426

BER PERFORMANCE OF MU-MIMO SYSTEM USING DIRTY PAPER CODING Garima Saini1, Shivkaran Meghwal2 1,2

Electronics and Communication Engineering, National Institute of Technical Teachers, Training and Research, Chandigarh, India 1

garimasaini_18@rediffmail.com,

Abstract- In this paper Dirty Paper Coding for communication system is implemented. MIMO application that involves devices such as cell phones, pocket PCs require closely spaced antenna, which suffers from mutual coupling among antennas and high spatial correlation for signals. DPC is used for compensating the degradation due to correlation and mutual coupling. Simulation results show significant performance in terms of bit error rate (BER) by use of Dirty Paper Coding (DPC) for 4G communication. Index Terms- Dirty Paper Coding (DPC), Multi-User MIMO (MU-MIMO), Broad-Cast channels (BC), Multi-access channels (MAC), Correlation, Mutual coupling. I. INTRODUCTION Wireless is an emerging field, which has been enormous growth in last several years. The huge uptake rate of mobile phone technology, wireless local area network (WLAN) and exponential growth of the internet have resulted in an increased demand for new methods of obtaining high capacity wireless network. The goal of 2G, 3G and 4G is to provide a wider range of services like as communications, video phones, and high speed internet access. To meet the requirements of emerging high bandwidth applications, wireless systems continue to strive for higher and higher data rates [1]. Large spectral efficiencies have been predicted for wireless system with multiple antennas when the channel exhibits rich scattering. It has been shown that MIMO systems have the potential for large information theoretic capacities. They provide several independent communications channels between transmitter and receiver. In an ideal multipath channel, the MIMO capacity is approximately N times the capacity of a single system, where N is the smaller size of the transmit or receive antenna elements. The channel capacity of MIMO system is found to be limited by correlation [2]. The spectral efficiency of 3G network is too low to support high data rate services at low cost. Since as soon as in MIMO 3G system the number of antenna elements will be increased, due to this capacity will reduced [3, 4]. As a consequence one of the main focuses of 4G is to significantly improve the spectral efficiency. This requirement of improvement in spectral efficiency makes use of Dirty Paper Coding [5]. For using application such as Wireless LAN, Cellular telephony, single base station must communicate with many users simultaneously. Therefore, the study of Multi-User MIMO (MU-MIMO) systems has emerged as an important research topic recently. The channel capacity of single user NR x NT International Journal of Electrical & Electronics Engineering

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2

shivkaran_sonel@yahoo.co.in

MIMO systems is proportional to Nmin=min (NT, NR) [6]. In the Figure 1, shows multiple users are connected with station [7].

Figure 1. A Multi-user MIMO system for K=4[7]

Four users are connected into Figure 1. i.e. K=4. Three out of four users are selected and allocated communication resource such as time, frequency, and spatial stream. In multi-user K.NM antenna can communicate with a single BS antenna with NB antennas. So, (K.NM) x NB system are used for downlink and NB x (K.NM) MIMO system for uplink. II. MATHEMATICAL MODEL FOR MULTI-USER MIMO [7] A. Uplink Channel(Multiple access channel) In Figure 2. Uplink channel is mathematically modeled. We assume that Base stations (BS) and mobile station (MS) are equipped with NB and NM. The received signal is given by UL UL UL (1) y  H1 x1  H2 x2  ............HK xK  z MAC

H

H

UL 1

UL

H

UL 2

 x1       x   K

...............

H

UL K

 x1      z x   K

(2)

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