Title :
Hybrid Division Duplex System for Next-Generation Cellular Services
Author :
Yun, Sangboh ; Park, Seung Young ; Lee, Yeonwoo ; Park, Daeyoung ; Kim, Yungsoo ; Kim, KiHo ; Kang, Chung Gu
Author_Institution :
Samsung Electron. Co. Ltd., Suwon
Abstract :
The paper proposes a new duplexing scheme, which is called the hybrid division duplex (HDD), that is suitable for fourth-generation mobile communication systems. The proposed mobile communication system is much more flexible and efficient in providing asymmetric data service and managing intercell interference by exploiting the advantages of both time division duplex (TDD) and frequency division duplex (FDD) schemes. The HDD scheme has a pair of frequency bands such as the FDD, performing a TDD operation using one of the bands in such a manner that allows for simultaneous FDD and TDD operations. Considering the properties of the HDD system architecture, frequency hopping orthogonal frequency division multiple (OFDM) access is adopted in one band for the TDD operation and code division multiple access (CDMA) in the other band for the FDD uplink operation. The important advantage of the HDD scheme is the robustness against cross time slot interference that is inherent to the TDD system, which is caused by the asynchronous downlink/uplink switching boundaries among all neighbor cells. From the simulation results, the proposed system can achieve approximately 7% and 30% improvement with regard to the downlink and uplink throughput, respectively, as compared to the conventional TDD system under cell-independent downlink/uplink traffic asymmetries. It demonstrates that the HDD scheme is a viable solution for future communication systems that are projected to have a cell-independent asymmetric-traffic-supported hierarchical cell structure.
Keywords :
4G mobile communication; OFDM modulation; cellular radio; code division multiple access; frequency hop communication; telecommunication traffic; time division multiple access; CDMA; FDD uplink operation; HDD system architecture; OFDM; TDD operation; asymmetric data service; asynchronous downlink/uplink switching boundaries; cell-independent downlink/uplink traffic asymmetries; code division multiple access; cross time slot interference; fourth-generation mobile communication systems; frequency division duplex; frequency hopping orthogonal frequency division multiple access; hybrid division duplex system; intercell interference; next-generation cellular services; time division duplex; Communication system traffic; Downlink; Frequency conversion; Interference; Mobile communication; Multiaccess communication; OFDM; Robustness; Throughput; Traffic control; Code division multiple access (CDMA); frequency division duplex (FDD); frequency hopping orthogonal frequency division multiple access (FH-OFDMA); hybrid division duplex (HDD); time division duplex (TDD);
Journal_Title :
Vehicular Technology, IEEE Transactions on
DOI :
10.1109/TVT.2007.900389