• 제목/요약/키워드: power and rate allocation

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멀티미디어 응용을 위한 저전력 데이터 캐쉬 구조 및 마이크로 아키텍쳐 수준 관리기법 (Low-Power Data Cache Architecture and Microarchitecture-level Management Policy for Multimedia Application)

  • 양훈모;김정길;박기호;김신덕
    • 정보처리학회논문지A
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    • 제13A권3호
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    • pp.191-198
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    • 2006
  • 최근 디지털 멀티미디어 응용기기는 휴대 편의성은 물론 하나의 기기에서 다양한 멀티미디어 데이터 처리를 가능하게 하는 기능적 집적이 이루어지고 있다. 이와 같은 추세는 기기가 처리해야 하는 데이터 양의 증가와 이를 수행하기 위하여 요구되는 온칩 메모리의 크기 및 연산 유닛의 고성능화를 요구하여 전력 소비량의 증가를 유발시킨다. 연산 엔진에서 사용되는 대표적인 온칩 메모리인 캐쉬는 전력 사용에 있어서 중요한 비율을 차지하는 구조로 저전력 설계를 위한 구조적 개선의 주요 대상이다. 본 논문에서는 멀티미디어 응용을 수행하는 연산 엔진의 데이터 캐쉬에서 소비되는 전력을 감소시키기 위하여 멀티미디어 응용의 데이터 사용 특성을 파악하여 이 특성을 전력소비를 감소시키는 목적으로 활용 가능한 분할된 캐쉬구조를 제안한다. 그리고 각각의 분할된 캐쉬에 대하여 특정 주소 영역의 데이터 참조를 고정시킴으로써 얻을 수 있는 전력 소비면의 성능 향상을 평가한다. 시뮬레이션 결과 제안하는 캐쉬 구조는 같은 크기의 직접사상 캐쉬, 2중연관 캐쉬, 4중연관 캐쉬에 대해 유사한 성능을 나타내면서, 각각의 기존 캐쉬 구조와 비교하였을 경우 33.2%, 53.3% 및 70.4%만큼 감소된 전력으로 동작 가능하다.

Joint Beamforming and Jamming for Physical Layer Security

  • Myung, Jungho;Heo, Hwanjo;Park, Jongdae
    • ETRI Journal
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    • 제37권5호
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    • pp.898-905
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    • 2015
  • In this paper, we consider a joint beamforming and jamming design to enhance physical layer security against potential multiple eavesdroppers in a multiple-input and single-output cellular broadcast channel. With perfect channel state information at the base station, we propose various design approaches to improve the secrecy of the target user. Among the proposed approaches, the combined beamforming of maximum ratio transmission and zero-forcing transmission with a combination of maximum ratio jamming and zero-forcing jamming (MRT + ZFT with MRJ + ZFJ) shows the best security performance because it utilizes the full transmit antenna dimensions for beamforming and jamming with an efficient power allocation. The simulation results show that the secrecy rate of this particular proposed approach is better than the rates of the considered conventional approaches with quality-of-service and outage probability constraints.

Correlated Intelligent Reflecting Surface and Improved BER Performance of NOMA

  • Chung, Kyuhyuk
    • International Journal of Internet, Broadcasting and Communication
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    • 제14권3호
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    • pp.79-84
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    • 2022
  • Towards the sixth generation (6G) mobile networks, spectrum and energy efficiency of non-orthogonal multiple access (NOMA) transmissions in the fifth generation (5G) wireless system have been improved by intelligent reflecting surface (IRS) technologies. However, the reflecting devices of an IRS tend to be correlated because they are placed close on the surface each other. In this paper, we present an analysis on the correlated IRS in NOMA cellular networks. Specifically, we consider the bit-error rate (BER) performances for correlated-IRS in NOMA networks. First, based on the central limit theorem, we derive an approximate analytical expression of the BER for correlated-IRS NOMA systems, by using the second moment of the channel gain. Then we validate the proposed analytical BER by Monte Carlo simulations, and show that they are in good agreement. In addition, we also show numerically the BER improvement of the correlated-IRS NOMA over the conventional independent-IRS NOMA.

무선 멀티홉 네트워크에서 종단간 최적 전송률을 위한 분산 송신전력제어 (Distributed Transmit Power Control for Optimal End-to-End Throughput in Wireless Multihop Networks)

  • 최현호
    • 한국ITS학회 논문지
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    • 제11권2호
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    • pp.92-101
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    • 2012
  • 이 논문에서는 무선 멀티홉 네트워크 환경에서 종단간 최적 전송률을 제공하기 위한 분산 송신전력제어 방안을 제안한다. 제안 방안은 멀티홉 구성 링크들의 전송률이 갖는 연대 특성과 멀티홉 종단간 전송률이 최소 링크 전송률에 의해 결정된다는 점을 고려하여, 멀티홉 구성 링크들의 전송률이 모두 같아지도록 송신전력을 제어함으로써 종단간 전송률을 최대화 한다. 또한 제안 방안은 이웃단말과의 정보 공유만을 가지고 단말 스스로 송신전력 값을 계산하는 분산 방식으로 송신전력 제어에 필요한 정보 교환 오버헤드를 줄인다. 시뮬레이션 결과 제안 방안은 고정된 최대 송신전력 값을 사용한 기존 방식 대비 종단간 전송률과 전력소비 측면에서 큰 성능이득을 보여준다.

Impacts of Non-Uniform Source on BER for SSC NOMA (Part I): Optimal MAP Receiver's Perspective

  • Chung, Kyuhyuk
    • International Journal of Internet, Broadcasting and Communication
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    • 제13권4호
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    • pp.39-47
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    • 2021
  • Lempel-Ziv coding is one of the most famous source coding schemes. The output of this source coding is usually a non-uniform code, which requires additional source coding, such as arithmetic coding, to reduce a redundancy. However, this additional source code increases complexity and decoding latency. Thus, this paper proposes the optimal maximum a-posteriori (MAP) receiver for non-uniform source non-orthogonal multiple access (NOMA) with symmetric superposition coding (SSC). First, we derive an analytical expression of the bit-error rate (BER) for non-uniform source NOMA with SSC. Then, Monte Carlo simulations demonstrate that the BER of the optimal MAP receiver for the non-uniform source improves slightly, compared to that of the conventional receiver for the uniform source. Moreover, we also show that the BER of an approximate analytical expression is in a good agreement with the BER of Monte Carlo simulation. As a result, the proposed optimal MAP receiver for non-uniform source could be a promising scheme for NOMA with SSC, to reduce complexity and decoding latency due to additional source coding.

BER Performance Comparison for Intelligent Reflecting Surface in NOMA: Phase Shifts Perspective

  • Chung, Kyuhyuk
    • International journal of advanced smart convergence
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    • 제11권3호
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    • pp.17-22
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    • 2022
  • As the sixth generation (6G) promising technique, intelligent reflecting surface (IRS) has recently attracted much attention. The IRS based wireless communication is expected to deploy the upcoming 6G mobile networks, to increase energy and spectrum efficiency in the fifth generation (5G) wireless networks. In this paper, we compare the bit-error rate (BER) performances for phase-shift schemes of IRS non-orthogonal multiple access (NOMA). First, we derive a BER expression for the equalizing phase-shift scheme in IRS-NOMA networks. Then we compare the BER of the equalizing phase-shift scheme to that of the identical phase-shift scheme in IRS-NOMA networks, and show the BER improvement of the equalizing phase-shift scheme IRS NOMA over the identical phase-shift scheme IRS NOMA. Furthermore, we also validate the proposed analytical BER for the equalizing phase-shift scheme in IRS-NOMA by Monte Carlo simulations, and demonstrate that they well match each other.

OFDMA 무선통신시스템의 호접속 제어를 위한 SMDP 기반 최적화모형 (SMDP-Based Optimization Model for Call Admission Control in an OFDMA Wireless Communication Systems)

  • 백천현;정용주
    • 산업공학
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    • 제25권4호
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    • pp.450-457
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    • 2012
  • This study addresses the call admission control(CAC) problem for OFDMA wireless communication systems in which both subcarriers and power should be considered together as the system resources. To lessen the exccessive allocation of radio resources for protecting handoff calls, the proposed CAC allows the less data rate than their requirements to handoff calls. The CAC problem is formulated as a semi-Markov decision process(SMDP) with constraints on the blocking probabilities of handoff calls. Some extensive experiments are conducted to show the usefulness of the proposed CAC model.

직교 주파수 분할 다중화 방식에서 데이터 전송률을 최대화 시키기 위한 송신 파워 및 비트 할당 기법 연구 (Transmit Power and Bit Allocation scheme for data rate maximization in OFDM)

  • 최득수;박경민;박효열;김용석;황금찬
    • 한국정보과학회:학술대회논문집
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    • 한국정보과학회 2003년도 가을 학술발표논문집 Vol.30 No.2 (3)
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    • pp.175-177
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    • 2003
  • 본 논문에서는 직교 주파수 분할 다중화 전송방식(OFDM:Orthogonal Frequency Division Multiplexing)에서 비트 오류율(BER)과 시스템에서 사용할 수 있는 총 송신 파워가 제한된 상태에서 데이터 전송률을 최대화 시키는 기법을 제안한다. 제안한 기법은 미리 계산된 비트수별 신호대잡음비 임계값(threshold)과 부반송파의 신호대잡음비를 비교한 후 부반송파별 송신 파워를 최적화 시켜 비트를 할당한다. 이 기법은 송신 파워 및 비트를 할당하는 최적의 기법이라고 알려진 Hughes­Hartogs 기법과 거의 동일한 데이터 전송률을 가질 수 있으면서, 부반송파의 송신 파워 및 비트수를 할당하기 위해 필요한 반복작업을 줄일 수 있다.

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Impacts of Non-Uniform Source on BER for SSC NOMA (Part II): Improved BER Performance Analysis

  • Chung, Kyuhyuk
    • International Journal of Internet, Broadcasting and Communication
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    • 제13권4호
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    • pp.48-54
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    • 2021
  • In most existing researches on non-orthogonal multiple access (NOMA) with symmetric superposition coding (SSC), uniform sources have been usually considered. For the first part in this two-part paper, for the strongest channel gain user, we showed that the bit-error rate (BER) for the optimal maximum a-posteriori (MAP) receiver for the non-uniform source improves slightly, compared to that of the conventional receiver for the uniform sources. We demonstrate that in communication scenarios of the non-uniform source NOMA schemes, for the weakest channel gain user, the BER performance of the optimal MAP receiver for a non-uniform source improves greatly, compared to that of the conventional receiver for uniform sources. We first derive an analytical expression of the BER for non-uniform source NOMA with SSC. Then, simulations demonstrate that the BER of the optimal MAP receiver for the non-uniform source improves, compared with that of the conventional maximum likelihood (ML) receiver for the uniform sources. In result, the proposed optimal MAP receiver for the non-uniform source could be a promising scheme for SSC NOMA, with improved BER performances.

Performance Analysis for Weaker Channel User in Non-Uniform Source SSC NOMA with Novel BTS

  • Chung, Kyuhyuk
    • International journal of advanced smart convergence
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    • 제11권1호
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    • pp.36-41
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    • 2022
  • Recently, to improve the performance of the strongest channel gain user in non-orthogonal multiple access (NOMA) with a non-uniform source and symmetric superposition coding (SSC), a novel bit-to-symbol (BTS) mapping have been proposed. However, only the performance of the user with the stronger channel gain was analyzed. Thus, we compare the bit-error rate (BER) of the new BTS scheme with that of uniform sources, especially for the user with weakest channel gain. First, we show that the performance of the novel BTS scheme for the user with weakest channel gain also improves, compared to that of the uniform sources. Furthermore, the signal-to-noise (SNR) gain of the new BTS scheme over the uniform sourcesis calculated. As a consequence, the novel BTS scheme would improve the performance of the user with weakest channel gain as well as that with the stronger channel gain for SSC NOMA with a non-uniform source.