• Title/Summary/Keyword: Dynamic TDMA Protocol

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A New MAC Protocol for Multimedia Wireless Networks Using Dynamic TDMA/TDD Frame and Eestimation of the Number F Active Mobiles (동적 TDMA/TDD 프레임과 활성 단말의 개수 예측을 이용한 무선 멀티미디어 매체접근제어 프로토콜)

  • 박준호;조영종
    • Proceedings of the Korean Information Science Society Conference
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    • 1998.10a
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    • pp.229-231
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    • 1998
  • 본 논문에서 제안하는 매체접근제어 프로토콜은 활성 단말의 개수를 통계적 특성에 의하여 예측하고 이를 상향 요구 슬롯의 액세스 확률에 적용하여 요구슬롯의 수율(Throughput)을 높이도록 하였으며, 단말에세 슬롯을 할당하는 방식으로 고정할당법과 동적 할당법을 동시에 사용하였다. 고정 할당법은 모든 단말에게 최송한 제공될 수 있는 서비스 품질(QoQ: Quality of Server)을 보장하는 방식이며 동적할당법은 음성 단말에 대하여 버퍼의 상태에 따라 지정된 서비스 품질을 제공하기 위하여 각 단말에게 동적으로 슬롯을 할당하는 방법이다. 제안된 프로토콜에 대해 시뮬레이션을 통하여 음성 및 데이터 단말의 수율과 패킷 전송 지연을 구하고 음성 단말의 패킷 손실률을 분석하여 동적 할당법의 효율에 대하여 알아본다.

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Dynamic Channel Assignment Scheme Based on the Number of Success and Collision of Random Channel in HIPERLAN/2 (HIPERLAN/2에서 랜덤채널의 성공수와 충돌수에 기반한 동적 채널할당 방안)

  • Lim, Seog-Ku
    • Journal of Digital Contents Society
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    • v.12 no.3
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    • pp.347-353
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    • 2011
  • In HIPERLAN/2, the radio channels are assigned by AP(Access Point) that is centrally operated and the MAC protocol is based on TDMA/TDD. Mobile terminal that data transmission is necessary to uplink requests radio resource to AP through RCH channel. The changing number of RCHs in each MAC frame is important because too many RCHs may result in a waste of radio resources and too few RCHs may result in many access collisions and prolong time that connect to AP. Hence the number of RCH should be allocated properly according to traffic. From these point, this paper proposes an scheme that dynamically assigned the number of RCH which is based on the number of success and collision of message in previous MAC frame. To prove efficiency of proposed scheme, lots of simulations are conducted and analyzed.

Hybrid reservation request algorithm for dynamic reservation TDMA/TDD protocol (혼합 예약 요청 알고리즘을 이용한 동적 예약 TDMA/TDD 프로토콜)

  • 박선현;최덕규
    • Proceedings of the Korea Society for Simulation Conference
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    • 2001.05a
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    • pp.132-132
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    • 2001
  • 본 논문에서는 혼합예약요청(hybrid reservation request) 알고리즘을 적용한 새로운 동적 예약 TDMA 프로토콜을 제안한다. 제안된 혼합 예약 요청 알고리즘은 기존의 랜덤접속방식과 기지국의 중재 없이 단말간 직접 신호교환을 통하여 이웃 단말의 새로운 예약 요청을 대신 전송하는 방식을 혼합해서 사용하는 방법이다. 이 알고리즘은 기존 slotted-ALOHA 방식을 이용한 예약 요청의 비효율성을 개선하여 새로운 단말의 예약 요청실패로 인한 셀 전송지연 및 호 봉쇄 확률(call blocking probability)을 줄이기 위한 목적으로 제안되었다. 제안한 알고리즘은 새로 전송할 데이터를 가진 단말이 많은 경우에 특히 효율적이다. 본 논문에서 제안하는 프로토콜은 모든 종류의 트래픽이 예약을 통한 전송방식으로 전송된다. 즉, 단말들로부터의 예약 요청을 바탕으로, 기지국이 스케줄링을 하여 트래픽 별로 접근 슬랏을 할당해 주는 방식이다. 이 경우, 예약 요청을 하는 방법은 새로 전송을 개시하는 단말과 이미 전송중인 단말의 경우가 다른데, 새로운 전송을 위한 예약이 필요한 단말은 제안하는 알고리즘을 이용하며, 이미 예약에 성공한 단말은 기존에 사용하던 자신의 버스트헤더(burst header)에 피기백(piggybacking)하는 방법을 이용한다. 제안한 알고리즘에 따라, 새로 접속하는 단말이나 새로운 예약 요청이 필요한 단말은 두 단계로 요청을 전송할 수 있다. 첫 번째 단계는 이미 예약에 성공하여 전송중인 이웃단말에게 전송요청신호를 보내 간접적으로 기지국에게 예약을 요청하는 방법이며, 두 번째 단계는 첫 번째 방법이 실패했을 경우 기존의 랜덤접속방법에 참가하는 것이다 먼저 첫 번째 방법에서는 단말이 랜덤접근 구간의 예약요청구간(resonation request)중 하나의 미니 슬랏을 선택해 이웃 단말들에게 한번 방송(broadcast) 한다 이후 ACK 응답구간(ACK receive)에서 응답을 받으면 예약요청성공이라 간주하고, 그렇지 않으면 실패로 판단, 뒤이어 오는 랜덤접근구간(normal random access period)에 참가하여 기지국에게 직접 예약 요청을 한다. 시뮬레이션은 기존 slotted-ALOHA방식으로 랜덤 접속을 할 경우와 제안한 방식과의 성공률을 비교해 제안한 방식의 call blocking probability가 낮음을 보였다.

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Dynamic Random Channel Allocation Scheme For Supporting QoS In HIPERLAN/2

  • Park S. J;Kang J. E;Lee J. K
    • Proceedings of the IEEK Conference
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    • summer
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    • pp.35-38
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    • 2004
  • The MAC protocol of HIPERLAN/2 is based on TDMA/TDD and AP (Access Point) can dynamically allocate the number of RCHs (Random CHannels). We propose a dynamic random channel allocation scheme improved by limiting the number of minimum RCHs. On a simulated scenario adopted practical Internet traffic, the proposed scheme is shown to achieve over $19\%$ lower delay than previously studied algorithm. This study will be a first step towards designing scope of RCHs for high-performance wireless packet network

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Efficient Differentiated Bandwidth Allocation for QoS based Ethernet PON System (QoS 기반의 EPON 시스템에서 효율적인 차등 대역폭 할당)

  • Eom Jong-Hoon;Jung Min-Suk;Kim Sung-Ho
    • Journal of KIISE:Information Networking
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    • v.32 no.2
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    • pp.156-166
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    • 2005
  • Ethernet passive optical network is an economical and efficient access network that has received significant research attention in recent years. A MAC(Media Access Control) protocol of PON, the next generation access network, is based on TDMA(Time Division Multiple Access) basically. In this thesis, we addressed the problem of dynamic bandwidth allocation in QoS based Ethernet PONs. We augmented the bandwidth allocation to support QoS in a differentiated services framework. Our differentiated bandwidth guarantee allocation(DBGA) allocates effectively and fairly bandwidths among end users. Moreover, we showed that DBGA that perform weighted bandwidth allocation for high priority packets result in better performance in terms of average and maximum packet delay, as well as network throughput compared with existing dynamic bandwidth allocations. We used simulation experiments to study the performance and validate the effectiveness of the proposed bandwidth allocations.

Dynamic Random Channel Allocation Algorithm by Limiting the Number of Minimum RCH in HIPERLAN/2 (HIPERLAN/2에서 최소 RCH 수를 제한한 동적 랜덤채널 할당 기법)

  • Kang, Jae-Eun;Lee, Jong-Kyu
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.34 no.1A
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    • pp.58-64
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    • 2009
  • In this paper, we propose an dynamic random channel allocation scheme increasing probability of channel acquisition and reducing delay by limiting the number of minimum RCHs(Random CHannels) as an optimal factor $\beta$. The MAC protocol of HIPERLAN/2 is based on TDMA/TDD and MT(Mobile Terminal) can obtain chance of traffic transmission through channel competition in RCH period. And AP(Access Point) can dynamically schedule the number of RCHs based on the number of the collision in each RCH of the previous frame. Therefore, the proposed scheme increases a probability of channel acquisition and reduces delay by means of guaranteeing the number of minimum RCHs. With a practical Internet traffic, it is concluded that by the proposed scheme the delay reduction of the order of 19% and slightly better throughput are obtained compared to the conventional algorithm.

Dynamic Channel Assignment Scheme Considering Number of Success and Collision in HiperLNA/2 WLAN (HiperLAN/2 무선랜에서 성공과 충돌수를 고려한 동적채널할당 방안)

  • Lim, seog-ku
    • Proceedings of the Korea Contents Association Conference
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    • 2009.05a
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    • pp.682-686
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    • 2009
  • The MAC protocol of HiperLAN/2 is based on TDMA/TDD. The radio channels are assigned by AP(Access Point) that is centrally operated. Mobile terminal that data transmission is necessary to uplink requests radio resource to AP through RCH channel. The changing number of RCHs in each MAC frame is important because too many RCHs may result in a waste of radio resources and too few RCHs may result in many access collisions and prolong time that connect to AP. Therefore, number of RCH should be allocated properly according to traffic. From these viewpoint, this paper proposes an advanced scheme that dynamically changed the number of RCH which is based on the number of success and collision of RR message in previous MAC frame. To prove efficiency of proposed scheme, a lots of simulations are conducted and analyzed.

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A Study On The Wireless ATM MAC Protocol Using Mini-slot With Dynamic Bandwidth Allocation Algorithm (동적 대역 할당 알고리즘을 이용한 미니슬롯 기반의 무선 ATM 매체 접속 제어 프로토콜에 관한 연구)

  • Jeong, Geon-Jin;Lee, Seong-Chang
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.37 no.2
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    • pp.17-23
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    • 2000
  • Wireless link has high bit error rate compared with wired link and many users share this limited bandwidth. So it needs more powerful error control code and efficient media access control(MAC) to provide multimedia service reliably. In this paper we proposed efficient MAC frame format based on TDMA using mini-slot for request access. The number of mini-slots is variable based on the result of collision in the previous frame. This dynamic allocation of request mini-slots helps resolve the contention situation quickly and avoids the waste of bandwidth that may occur when there are several unneeded request mini-slots. The simulation results are also presented in terms of channel utilization, call blocking probability and cell transmission delay for mixed traffic environment.

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Performance Evaluation of Traffic Adaptive Sleep based MAC in Clustered Wireless Sensor Networks (클러스터 기반 무선 센서 망에서 트래픽 적응적 수면시간 기반 MAC 프로토콜 성능 분석)

  • Xiong, Hongyu;So, Won-Ho
    • Journal of the Institute of Electronics Engineers of Korea CI
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    • v.48 no.5
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    • pp.107-116
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    • 2011
  • In this paper, a traffic adaptive sleep based medium access control (TAS-MAC) protocol for wireless sensor networks (WSNs) is proposed. The protocol aims for WSNs which consist of clustered sensor nodes and is based on TDMA-like schema. It is a typical schedule based mechanism which is adopted in previous protocols such as LEACH and Bit-Map Assisted MAC. The proposed MAC, however, considers unexpected long silent period in which sensor nodes have no data input and events do not happen in monitoring environment. With the simple traffic measurement, the TAS-MAC eliminates scheduling phases consuming energy in previous centralized approaches. A frame structure of the protocol includes three periods, investigation (I), transmission (T), and sleep-period (S). Through the I-period, TAS-MAC aggregates current traffic information from each end node and dynamically decide the length of sleep period to avoid energy waste in long silent period. In spite of the energy efficiency of this approach, the delay of data might increase. Thus, we propose an advanced version of TAS-MAC as well, each node in cluster sends one or more data packets to cluster head during the T-period of a frame. Through simulation, the performance in terms of energy consumption and transmission delay is evaluated. By comparing to BMA-MAC, the results indicate the proposed protocol is more energy efficient with tolerable expense in latency, especially in variable traffic situation.