• 제목/요약/키워드: per-antenna rates

검색결과 3건 처리시간 0.019초

Approaching Near-Capacity on a Multi-Antenna Channel using Successive Decoding and Interference Cancellation Receivers

  • Sellathurai, Mathini;Guinand, Paul;Lodge, John
    • Journal of Communications and Networks
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    • 제5권2호
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    • pp.116-123
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    • 2003
  • In this paper, we address the problem of designing multirate codes for a multiple-input and multiple-output (MIMO) system by restricting the receiver to be a successive decoding and interference cancellation type, when each of the antennas is encoded independently. Furthermore, it is assumed that the receiver knows the instantaneous fading channel states but the transmitter does not have access to them. It is well known that, in theory, minimummean- square error (MMSE) based successive decoding of multiple access (in multi-user communications) and MIMO channels achieves the total channel capacity. However, for this scheme to perform optimally, the optimal rates of each antenna (per-antenna rates) must be known at the transmitter. We show that the optimal per-antenna rates at the transmitter can be estimated using only the statistical characteristics of the MIMO channel in time-varying Rayleigh MIMO channel environments. Based on the results, multirate codes are designed using punctured turbo codes for a horizontal codedMIMOsystem. Simulation results show performances within about one to two dBs of MIMO channel capacity.

무선통신 백-홀용 V-밴드 도파관 슬롯 서브-배열 안테나의 설계 (Design of V-Band Waveguide Slot Sub-Array Antenna for Wireless Communication Back-haul)

  • 노광현;강영진
    • 한국산학기술학회논문지
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    • 제17권7호
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    • pp.334-341
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    • 2016
  • 본 논문은 고 용량, Gbps급 데이터 전송을 만족하는 무선 백-홀 시스템에 적용하기 위한 도파관 개구 결합 급전 구조 안테나에 관한 내용으로 V-대역인 57GHz~66GHz 주파수 대역에서 사용 할 공동-급전 구조를 갖는 $32{\times}32$ 도파관 슬롯 서브-배열 안테나를 설계, 제작 하였다. 안테나 구성은 적층 형태로 되어있으며, 각각 복사 부(외부 홈과 슬롯, 캐비티), 개구 결합 부, 급전 부로 이루어져 있다. 안테나 설계는 3차원 유한 요소 법(FEM)을 기반으로 하는 HFSS를 이용 하였고, 안테나 제작은 알루미늄 재질로 정밀도 높은 밀링 머신을 사용하여 각 층을 가공 한 후 은(Ag)-도금 과정을 거쳐 조립하였다. 측정을 통해서 안테나의 특성을 분석한 결과 목표했던 적용 주파수 대역에서의 반사 손실은 전반적으로 -12dB이하 손실 특성을 나타냈으며, VSWR < 2.0기준으로 약 16 %에 달하는 광 대역 주파수 특성을 보였다. 측정된 안테나 복사패턴의 1차 부엽 레벨은 -12.3 dB미만 이고, 3 dB 빔 폭은 약 $1.85^{\circ}$ 로 좁은 빔 폭을 갖는다. 또한, 안테나 이득은 평균 38.5 dBi이상, 효율은 약 90% 이상으로 높은 효율을 얻었다.

cdma2000 Physical Layer: An overview

  • Willenegger, Serge
    • Journal of Communications and Networks
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    • 제2권1호
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    • pp.5-17
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    • 2000
  • cdma2000 offers several enhancement as compared to TIA/EIA-95, although it remains fully compatible with TIA/EIA-95 systems and allows for a smooth migration from one to the other-Major new capability include:1)connectivity to GSM-MAP in addition to IP and IS-41 networks; 2) new layering with new LAC and MAC architectures for improved service multiplexing and QoS management and efficient use of radio resource ;3) new bands and band widths of operation in support of various operator need and constraints, as well as desire for a smooth and progressive migration to cdma 2000; and 4) flexible channel structure in support of multiple services with various QoS and variable transmission rates at up to 1 Mbps per channel and 2 Mbps per user. Given the phenomenal success of wireless services and desire for higher rate wireless services. improved spectrum efficiency was a major design goal in the elaboration of cdma2000. Major capacity enhancing features include; 1) turbo coding for data transmission: 2)fast forward link power control :3) forward link transmit diversity; 4) support of directive antenna transmission techniques; 5) coherent reverse link structure; and 6) enhanced access channel operation. As users increasingly rely on their cell phone at work and at home for voice and data exchange, the stand-by time and operation-time are essential parameters that can influence customer's satisfaction and service utilization. Another major goal of cdma2000 was therefore to enable manufacturers to further optimize power utilization in the terminal. Major battery life enhancing features include; 1) improved reverse link performance (i.e., reduced transmit power per information bit; 2) new common channel structure and operation ;3) quick paging channel operation; 4) reverse link gated transmission ; and 5) new MAC stated for efficient and ubiquitous idle time idle time operation. this article provides additional details on those enhancements. The intent is not to duplicate the detailed cdma2000 radio access network specification, but rather to provide some background on the new features of cdma2000 and on the qualitative improvements as compared to the TIA/EIA-95 based systems. The article is focused on the physical layer structure and associated procedures. It therefore does not cover the MAC, LAC, radio resource management [1], or any other signaling protocols in any detail. We assume some familiarity with the basic CDMA concepts used in TIA/EIA-95.

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