• 제목/요약/키워드: Adaptive bandwidth control

검색결과 163건 처리시간 0.029초

Optimal Bandwidth Allocation and QoS-adaptive Control Co-design for Networked Control Systems

  • Ji, Kun;Kim, Won-Jong
    • International Journal of Control, Automation, and Systems
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    • 제6권4호
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    • pp.596-606
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    • 2008
  • In this paper, we present a co-design methodology of dynamic optimal network-bandwidth allocation (ONBA) and adaptive control for networked control systems (NCSs) to optimize overall control performance and reduce total network-bandwidth usage. The proposed dynamic co-design strategy integrates adaptive feedback control with real-time scheduling. As part of this co-design methodology, a "closed-loop" ONBA algorithm for NCSs with communication constraints is presented. Network-bandwidth is dynamically assigned to each control loop according to the quality of performance (QoP) information of each control loop. As another part of the co-design methodology, a network quality of service (QoS)-adaptive control design approach is also presented. The idea is based on calculating new control values with reference to the network QoS parameters such as time delays and packet losses measured online. Simulation results show that this co-design approach significantly improves overall control performance and utilizes less bandwidth compared to static strategies.

A Low Jitter and Fast Locking Phase-Lock Loop with Adaptive Bandwidth Controller

  • Song Youn-Gui;Choi Young-Shig
    • Journal of information and communication convergence engineering
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    • 제3권1호
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    • pp.18-22
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    • 2005
  • This paper presents the analog adaptive phase-locked loop (PLL) architecture with a new adaptive bandwidth controller to reduce locking time and minimize jitter in PLL output for wireless communication. It adaptively controls the loop bandwidth according to the locking status. When the phase error is large, the PLL increases the loop bandwidth and reduces locking time. When the phase error is small, the PLL decreases the loop bandwidth and minimizes output jitters. The adaptive bandwidth control is implemented by controlling charge pump current depending on the locking status. A 1.28-GHz CMOS phase-locked loop with adaptive bandwidth control is designed with 0.35 $mu$m CMOS technology. It is simulated by HSPICE and achieves the primary reference sidebands at the output of the VCO are approximately -80dBc.

근사적 모델 역변환을 활용한 전기-유압 액추에이터의 적응 위치 제어기 설계 (Adaptive Position Controller Design of Electro-hydraulic Actuator Using Approximate Model Inversion)

  • 이경하;백승국;구자춘
    • 로봇학회논문지
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    • 제11권2호
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    • pp.92-99
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    • 2016
  • An electro-hydraulic actuator (EHA) is widely used in industrial motion systems and the increasing bandwidth of EHA position control is important issue. The model-inverse feedforward controller is known to extend the bandwidth of system. When the system has non-minimum phase (NMP) zeros, direct model inversion makes system unstable. To overcome this problem, an approximate model-inverse method is used. A representative approximate model inversion method is zero phase error tracking control (ZPETC). However, if zeros locate right half plane of z-plane, the approximate inverse model amplifies the high-frequency response. In this paper, to solve the problem of ZPETC, an adaptive model-inverse control is proposed. The adaptive algorithm updates feedforward term in real-time. The effectiveness of the proposed adaptive model-inverse position control strategy is verified by comparison with typical proportional-integral (PI) control and feedforward control by experiments. As a result, the proposed adaptive controller extends the bandwidth of EHA position control.

Channel-Adaptive Rate Control for Low Delay Video Coding

  • Lee, Yun-Gu
    • IEIE Transactions on Smart Processing and Computing
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    • 제5권5호
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    • pp.303-309
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    • 2016
  • This paper presents a channel-adaptive rate control algorithm for low delay video coding. The main goal of the proposed method is to adaptively use the unknown available channel bandwidth while reducing the end-to-end delay between encoder and decoder. The key idea of the proposed algorithm is for the status of the encoder buffer to indirectly reflect the mismatch between the available channel bandwidth and the generated bitrate. Hence, the proposed method fully utilizes the unknown available channel bandwidth by monitoring the encoder buffer status. Simulation results show that although the target bitrate mismatches the available channel bandwidth, the encoder efficiently adapts the given available bandwidth to improve the peak signal-to-noise ratio.

인터넷 차별 서비스 망에서 적응적 연결 수락 제어 메커니즘 (Adaptive Admission Control Mechanism in Differentiated Services Network)

  • 이준화;양미정;이우섭;김상하
    • 대한전자공학회논문지TC
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    • 제40권12호
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    • pp.83-93
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    • 2003
  • IP 망에서의 차별 서비스 구조는 품질 보장 서비스를 위해 대역폭 브로커를 기반으로 QoS프로비저닝의 제어 및 관리를 수행한다. 그러나, 이러한 대역폭 브로커는 모든 입구 에지 노드로 유입되는 호의 연결 수락 제어를 위해 중앙 집중형 자원 관리를 수행함에 따라 확장성 면에서 큰 단점을 갖는다. 본 논문에서는 대역폭 브로커를 갖는 차별 서비스 구조에서 확장성을 높이고 유입되는 호의 상태를 반영한 적응적 연결 수락 제어 메커니즘을 제안하고자 한다. 이를 위해 대역폭 브로커의 기능을 입구 에지 노드와 분리해서 자원 관리 및 프로비저닝을 대역폭 브로커에서 수행하고, 입구 에지 노드에서는 연결 수락 제어를 담당한다. 입구 에지 노드에서는 연결 수락제어를 위해 각 에지 노드간 패스 개념을 도입하고, 패스 단위로 할당된 대역 기반으로 연결 수락 제어를 수행한다. 패스 별 할당 대역량은 유입되는 트래픽에 따라 적응적으로 변화하게 되며 이는 대역록 브로커와의 통신을 최소화하면서 대역 자원의 효율적인 사용을 가능케 한다. 본 논문에서는 이러한 적응적 연결 수락 메커니즘을 제안하고 성능 분석을 통한 효율성 및 확장성의 개선을 제시하고자 한다.

인지라디오망의 스펙트럼홀 예측기반 적응 호수락제어기법 (Adaptive Call Admission Control Based on Spectrum Holes Prediction in Cognitive Radio Networks)

  • 이진이
    • 한국항행학회논문지
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    • 제20권5호
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    • pp.440-445
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    • 2016
  • 인지라디오망에서 제한된 스펙트럼 자원을 효율적으로 이용하는 방법으로 PU (primary user)가 사용하지 않는 스펙트럼 홀의 크기를 예측하여 SU (secondary user)가 이용하는 방법이 있다. 본 논문은 SU의 서비스품질을 만족시키기 위하여, SU스펙트럼 홉핑호의 손실확률 (SHDP; spectrum hopping call dropped probability)을 최소화는 적응 호수락제어 기법을 제안한다. 이 방법은 호수락제어, 대역폭예측, 적응대역폭할당으로 구성된다. 예측기법은 스펙트럼홀의 크기뿐만 아니라, SU스펙트럼 홉핑호가 요구하는 대역폭크기를 함께 예측하며, 예약할 수 있는 자원의 크기가 부족할 때는 적응대역폭할당을 이용하여 SU스펙트럼 홉핑호의 손실확률을 최소화시킨다. 예측기법은 위너예측기법을 이용한다. 시뮬레이션을 통하여 제안한 방법의 성능을 기존방법과 비교하고, SHDP를 최소화 할 수 있음을 보인다.

Call Admission Control Based on Adaptive Bandwidth Allocation for Wireless Networks

  • Chowdhury, Mostafa Zaman;Jang, Yeong Min;Haas, Zygmunt J.
    • Journal of Communications and Networks
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    • 제15권1호
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    • pp.15-24
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    • 2013
  • Provisioning of quality of service (QoS) is a key issue in any multi-media system. However, in wireless systems, supporting QoS requirements of different traffic types is a more challenging problem due to the need to simultaneously minimize two performance metrics - the probability of dropping a handover call and the probability of blocking a new call. Since QoS requirements are not as stringent for non-real-time traffic, as opposed to real-time traffic, more calls can be accommodated by releasing some bandwidth from the already admitted non-real-time traffic calls. If the released bandwidth that is used to handle handover calls is larger than the released bandwidth that is used for new calls, then the resulting probability of dropping a handover call is smaller than the probability of blocking a new call. In this paper, we propose an efficient call admission control algorithm that relies on adaptive multi-level bandwidth-allocation scheme for non-realtime calls. The scheme allows reduction of the call dropping probability, along with an increase in the bandwidth utilization. The numerical results show that the proposed scheme is capable of attaining negligible handover call dropping probability without sacrificing bandwidth utilization.

Channel-adaptive Image Compression for Wireless Transmission

  • Lee, Yun-Gu;Lee, Ki-Hoon
    • IEIE Transactions on Smart Processing and Computing
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    • 제6권4호
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    • pp.276-280
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    • 2017
  • This paper presents computationally efficient image compression for wireless transmission of high-definition video, to adaptively utilize available channel bandwidth and improve image quality. The method indirectly predicts an unknown available channel bandwidth by monitoring encoder buffer status, and adaptively controls a quantization parameter to fully utilize the bandwidth. Experimental results show that the proposed method is robust to variations in channel bandwidth.

다중 클라이언트 환경에서 HTTP 적응적 스트리밍의 효율적인 대역폭 활용을 위한 비디오 품질 조절 기법 (Video Quality Control Scheme for Efficient Bandwidth Utilization of HTTP Adaptive Streaming in a Multiple-Clients Environment)

  • 김민수;김희광;정광수
    • 정보과학회 논문지
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    • 제45권1호
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    • pp.86-93
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    • 2018
  • 다수의 클라이언트가 대역폭을 공유해 스트리밍 서비스를 받는 경우 HTTP 적응적 스트리밍(HTTP Adaptive Streaming)은 세그먼트 요청의 ON-OFF 패턴으로 인해 대역폭을 부정확하게 측정하는 문제가 있다. ON-OFF 패턴으로 인한 문제를 해결하기 위해 제안된 PANDA (Probe AND Adapt)는 목표 대역폭을 증가시키면서 요청할 세그먼트의 품질을 결정한다. 하지만 목표 대역폭을 고정된 양만큼 증가시키기 때문에 대역폭 활용도가 낮고 대역폭 변화에 느리게 반응하는 문제가 있다. 본 논문에서는 PANDA의 낮은 대역폭 활용도와 느린 반응성을 개선하기 위한 비디오 품질 조절 기법을 제안한다. 제안하는 기법은 세그먼트 다운로드 시간과 요청 간격을 비교해 대역폭 활용도를 판단한 후 대역폭 활용도에 따라 목표 대역폭을 증가시키는 양을 조절한다. 실험을 통하여 제안하는 기법이 대역폭을 충분히 활용하고 대역폭 변화에 빠르게 반응하는 것을 확인하였다.

An Adaptive Rate Control Algorithm for RCBR Transmission of Streaming Video

  • Hwangjun Song
    • 한국통신학회논문지
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    • 제27권2A호
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    • pp.146-156
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    • 2002
  • This paper presents an adaptive H.263+ rate control algorithm for streaming video applications under the networks supporting bandwidth renegotiation, which can communicate with end-users to accommodate their time-varying bandwidth requests during the data transmission. That is, the requests of end-users can be supported adaptively according to the availability of the network resources, and thus the overall network utilization can be improved simultaneously. They are especially suitable for the transmission of non-stationary video traffics. The proposed rate control algorithm communicates with the network to renegotiate the required bandwidth fort the underlying video which are measured based on the motion change information, and choose their control strategies according to the renegotiation results. Unlike most conventional algorithms that control only the spatial quality by adjusting quantization parameters, the proposed algorithm treats both the spatial and temporal qualities at the same time to enhance human visual perceptual quality. Experimental results are provided to demonstrate that the proposed rate control algorithm can achieve superior performance to the conventional ones with low computational complexity under the networks supporting bandwidth renegotiation.