• Title/Summary/Keyword: channel assignment

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Performance of RA-T spread-spectrum transmission scheme for centralized DS/SSMA packet radio networks (집중형 DS/SSMA 무선 패킷통신망을 위한 RA-T 대역확산 전송방식의 성능)

  • 노준철;김동인
    • Journal of the Korean Institute of Telematics and Electronics A
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    • v.33A no.6
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    • pp.11-22
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    • 1996
  • We address an issue of channel sharing among users by using a random assignment-transmitter-based (RA-T) spread-spectrum transmission scheme which permits the contention mode only in the transmission of a header while avoiding collision during the data packet transmission. Once the header being successfully received, the data packet is ready for reception by switching to one of programmable matched-filters. But the receoption may be blocked due to limited number of matched-filters so that this effect is taken into account in our analysis. For realistic analysis, we integrate detection performance at the physical level with channel activity at the link level through a markov chain model. We also consider an acknowledgement scheme to notify whether the header is correctly detcted and the data packet can be processed continuously, which aims at reducing the interference caused unwanted data transmission. It is shown that receiver complexity can be greatly reduced by choosing a proper number of RA codes at the cost of only a little throughput degradation.

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Nonlinear Effects of Transmitted CDMA Signals over an Optical Link (광링크를 통한 CDMA 신호 전송 시 비선형 특성)

  • Yun, Ji-Seon;Ji, Yun-Gyu;Jeong, Jong-Min
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.38 no.6
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    • pp.404-411
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    • 2001
  • In this paper, we have measured and analyzed the third-order intermodulation distortion(IMD3) mostly appeared in a laser diode(LD) of an optical link for CDMA signals to characterize the links with an inexpensive way. We analyzed adjacent channel power ratio(ACPR) of CDMA signals as a function of FA, which negatively affects ACPR.

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Experiment of VoIP Transmission with AMR Speech Codec in Wireless LAN (무선랜 환경에서 AMR 음성부호화기를 적용한 VoIP 전송 실험)

  • Shin, Hye-Jung;Bae, Keun-Sung
    • Speech Sciences
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    • v.11 no.4
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    • pp.67-73
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    • 2004
  • Packet loss, jitter, and delay in the Internet are caused mainly by the shortage of network bandwidth. It is due to queuing and routing process in the intermediate nodes of the packet network. In the Internet whose bandwidth is changing very rapidly in time depending on the number of users and data traffic, controlling the peak transmission bit-rate of a VoIP. system depending on the channel condition could be very helpful for making use of the available network bandwidth. Adapting packet size to the channel condition can reduce packet loss to improve the speech quality. It has been shown in [1] that a VoIP system with an AMR speech codec provides better speech quality than VoIP systems with fixed rate speech codecs. With the adaptive codec mode assignment. algorithm proposed in [1], in this paper, we performed the voice transmission experiments using the wireless LAN through the real Internet environment. Experimental results are analyzed and discussed with our findings.

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Efficient Message Scheduling for WDM Optical Networks with Minimizing Flow Time

  • Huang, Xiaohong;Ma, Maode
    • Journal of Communications and Networks
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    • v.6 no.2
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    • pp.147-155
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    • 2004
  • In this paper, we propose an efficient sequencing technique, namely minimum Row time scheduling (MFTS), to manage variable-Iength message transmissions for single-hop passive starcoupled WDM optical networks. By considering not only the message length but also the state of the receivers and the tuning latency, the proposed protocol can reduce the average delay of the network greatly. This paper also introduces a new channel assignment technique latency minimizing scheduling (LMS), which aims to reduce the scheduling latency. We evaluate the proposed algorithm, using extensive discrete-event simulations, by comparing its performance with shortest job first (SJF) algorithm. We find that significant improvement in average delay could be achieved by MFTS algorithm. By combining the proposed message sequencing technique with the channel selection technique, the performance of the optical network could be further improved.

An Energy-Efficient Channel Assignment Scheme in Multi-Channel Wireless Sensor Networks (멀티채널 무선센서네트워크에서 에너지 효율적인 채널할당 방법)

  • Yeoum, Sanggil;Shon, Minhan;Choo, Hyunseung
    • Proceedings of the Korea Information Processing Society Conference
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    • 2013.11a
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    • pp.284-286
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    • 2013
  • 멀티채널 무선센서네트워크에서 기존의 채널할당 방법들은 각 노드마다 다른 채널을 할당하는 방법을 채택하여 연구하였다. 이러한 경우 노드 간 전송 시에 채널을 수신 노드의 채널로 변경하고 다시 자신의 수신 채널로 변경이 필요하다. 채널 변경에는 에너지를 소모하기 때문에 이를 줄인다면 전송에 좀더 많은 에너지를 사용할 수 있다. 따라서 본 논문에서는 하위 노드의 수를 이용하여 이를 기반으로 채널할당을 하고 성능평가를 통해 에너지소모량을 측정한다. 측정결과 기존 기법에 비해 약 12%의 성능 향상을 보였다.

Channel Assignment Method Modeling for RFID Readers (RFID 리더들을 위한 채널 할당 방법 모델링)

  • Kim, Yong Taek;Bae, Sung Woo;Yang, Jung Kyu;Roh, Hyoung Hwan;Seong, Yeong Rak;Park, Jun Seok;Oh, Ha Ryoung
    • Proceedings of the Korea Information Processing Society Conference
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    • 2007.11a
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    • pp.899-902
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    • 2007
  • RFID(Radio Frequency IDentification) 시스템에서는 리더와 태그가 무선으로 통신을 하기 때문에 리더와 태그의 수가 많아지게 되면 서로간에 신호의 충돌이 발생한다. 이러한 충돌을 해결하기 위해서는 각각의 리더가 서로 다른 시간에 동작하거나 사용하는 채널을 달리하여 충돌을 해결할 수 있다. 본 논문에서는 셀 분할 기법을 적용하고 각각의 셀이 채널 운용을 다르게 하도록 하여 충돌문제를 해결하였다. 그 방법으로 주파수 호핑(Frequency Hopping) 방식과 CCA(Clear Channel Assessment) 기법을 사용할 것을 제안한다. 그리고 제안한 방법을 시뮬레이션 하기 위해 모델링 하는 방법에 대해 살펴 보겠다.

An Efficient Channel Selection and Power Allocation Scheme for TVWS based on Interference Analysis in Smart Metering Infrastructure

  • Huynh, Chuyen Khoa;Lee, Won Cheol
    • Journal of Communications and Networks
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    • v.18 no.1
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    • pp.50-64
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    • 2016
  • Nowadays, smart meter (SM) technology is widely effectively used. In addition, power allocation (PA) and channel selection (CS) are considered problems with many proposed approaches. In this paper, we will suggest a specific scenario for an SM configuration system and show how to solve the optimization problem for transmission between SMs and the data concentrator unit (DCU), the center that collects the data from several SMs, via simulation. An efficient CS with PA scheme is proposed in the TV white space system, which uses the TV band spectrum. On the basic of the optimal configuration requirements, SMs can have a transmission schedule and channel selection to obtain the optimal efficiency of using spectrum resources when transmitting data to the DCU. The optimal goals discussed in this paper are the maximum capacity or maximum channel efficiency and the maximum allowable power of the SMs used to satisfy the quality of service without harm to another wireless system. In addition, minimization of the interference to the digital television system and other SMs is also important and needs to be considered when the solving coexistence scenario. Further, we propose a process that performs an interference analysis scheme by using the spectrum engineering advanced Monte Carlo analysis tool (SEAMCAT), which is an integrated software tool based on a Monte-Carlo simulation method. Briefly, the process is as follows: The optimization process implemented by genetic evolution optimization engines, i.e., a genetic algorithm, will calculate the best configuration for the SM system on the basis of the interference limitation for each SM by SEAMCAT in a specific configuration, which reaches the solution with the best defined optimal goal satisfaction.

Interference Management by Vertical Beam Control Combined with Coordinated Pilot Assignment and Power Allocation in 3D Massive MIMO Systems

  • Zhang, Guomei;Wang, Bing;Li, Guobing;Xiang, Fei;lv, Gangming
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.9 no.8
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    • pp.2797-2820
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    • 2015
  • In order to accommodate huge number of antennas in a limited antenna size, a large scale antenna array is expected to have a three dimensional (3D) array structure. By using the Active Antenna Systems (AAS), the weights of the antenna elements arranged vertically could be configured adaptively. Then, a degree of freedom (DOF) in the vertical plane is provided for system design. So the three-dimension MIMO (3D MIMO) could be realized to solve the actual implementation problem of the massive MIMO. However, in 3D massive MIMO systems, the pilot contamination problem studied in 2D massive MIMO systems and the inter-cell interference as well as inter-vertical sector interference in 3D MIMO systems with vertical sectorization exist simultaneously, when the number of antenna is not large enough. This paper investigates the interference management towards the above challenges in 3D massive MIMO systems. Here, vertical sectorization based on vertical beamforming is included in the concerned systems. Firstly, a cooperative joint vertical beams adjustment and pilot assignment scheme is developed to improve the channel estimation precision of the uplink with pilots being reused across the vertical sectors. Secondly, a downlink interference coordination scheme by jointly controlling weight vectors and power of vertical beams is proposed, where the estimated channel state information is used in the optimization modelling, and the performance loss induced by pilot contamination could be compensated in some degree. Simulation results show that the proposed joint optimization algorithm with controllable vertical beams' weight vectors outperforms the method combining downtilts adjustment and power allocation.

Channel Assignment for RFID Readers in Dense Reader Environments (밀집리더환경에서 RFID 리더를 위한 채널 할당)

  • Sohn, Surgwon
    • Journal of the Korea Society of Computer and Information
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    • v.18 no.2
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    • pp.69-76
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    • 2013
  • Reader-to-reader interference in RFID system is occurred due to the use of limited number of frequencies, and this is the main cause of read rate reduction in the passive RFID tags. Therefore, in order to maximize the read rate under the circumstances of limited frequency resources, it is necessary to minimize the frequency interference among RFID readers. This paper presents a hybrid FDM/TDM constraint satisfaction problem models for frequency interference minimization problems of the RFID readers, and assigns optimal channels to each readers using conventional backtracking search algorithms. A depth first search based on backtracking are accomplished to find solutions of constraint satisfaction problems. At this moment, a variable ordering algorithm is very important to find a solution quickly. Variable ordering algorithms applied in the experiment are known as efficient in the graph coloring. To justify the performance of the proposed constraint satisfaction problem model, optimal channels for each readers in the passive UHF RFID system are allocated by using computer simulation satisfying various interference constraints.

Efficient Transmission Mode Selection Scheme for MIMO-based WLANs

  • Thapa, Anup;Kwak, Kyung Sup;Shin, Seokjoo
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.8 no.7
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    • pp.2365-2382
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    • 2014
  • While single-user spatial multiplexing multiple-input multiple-output (SU-MIMO) allows spatially multiplexed data streams to be transmitted to one node at a time, multi-user spatial multiplexing MIMO (MU-MIMO) enables the simultaneous transmission to multiple nodes. However, if the transmission time required to send packets to each node varies considerably, MU-MIMO may fail to utilize the available MIMO capacity to its full potential. The transmission time typically depends upon two factors: the link quality of the selected channel and the data length (packet size). To utilize the cumulative capacity of multiple channels in MIMO applications, the assignment of channels to each node should be controlled according to the measured channel quality or the transmission queue status of the node.A MAC protocol design that can switch between MU-MIMO and multiple SU-MIMO transmissions by considering the channel quality and queue status information prior to the actual data transmission (i.e., by exchanging control packets between transmitter and receiver pairs) could address such issues in a simple but in attractive way. In this study, we propose a new MAC protocol that is capable of performing such switching and thereby improve the system performance of very high throughput WLANs. The detailed performance analysis demonstrates that greater benefits can be obtained using the proposed scheme, as compared to conventional MU-MIMO transmission schemes.