Abstract

EST (Energy Spreading Transfonn) 기반의 변조는 광대역 무선통신에서 주파수 선택적 fading을 방지하는 효과적인 기술이다. 이 기법은 liner decoder의 복잡도를 가지면서 ISI (Inter-Symbol Interference)-free MFB (Matched Filter Bound) 에 근접한 성능을 나타낸다. EST 기반의 변조는 원래 QPSK에 대해 제안되었다. 하지만, 다중 fading 채널의 capacity를 최대한 이용하기 위해서 higher-order의 변조방식이 필요하다. 본 논문에서는 QPSK 에 대해 제안되었던 기존 EST 기반 변조를 재검토하고, 이를 8 PSK와 16 QAM으로 확장하는 것을 논의한다. 확장한 시스템의 성능은 Proakis B 채널과 8-tap fa이ng 채널에서의 가상실험을 통해 검증되었다. 8 PSK로 확장한 EST기반의 시스템은 MFB에 매우 근접한 성능을 보여주었지만 16 QAM으로 확장한 EST기반의 시스템은 MFB와의 성능 차이를 보여주었다. Energy spreading transform (EST) based modulation is an effective technique to combat frequency-selective fading in broadband wireless communication. It performs close to the inter-symbol interference (ISI)-free matched filter bound (MFB) only at the complexity of a linear detector. Originally, EST-based modulation has been proposed for QPSK. However, to fully utilize the capacity of multipath fading channels, higher-order modulations are also necessary. In this paper, we review the EST based modulation that has originally been proposed for QPSK and discuss its extension to 8 PSK and 16 QAM. The performance of the extended system is verified through simulation in Proakis B and 8-tap fading channel. The EST based modulation for 8 PSK shows the performance which is very close to MFB and the EST based modulation for 16 QAM shows the performance gap between its receiver and MFB.

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