• Title/Summary/Keyword: Soft-Handoff

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A Semi-Soft Handoff Mechanism with Zero Frame Loss in Wireless LAM Networks (무선 LAN 환경에서 프레임 손실 없는 Semi-Soft 핸드오프 방안)

  • 김병호;민상원
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.28 no.12B
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    • pp.1135-1144
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    • 2003
  • In this paper, we proposed a semi-soft handoff mechanism to provide link mobility in IEEE 802.11 wireless LAN environment. Buffers and routing tables in APs and portals are provided in order to reroute frames, which have not been received during handoff time and have been buffered in an old AP, to a new AP after handoff is performed. For the re -routing operation, the MAC routing table should be updated by exchanging information of a mobile terminal between neighbor APs. With our proposed scheme. a wireless LAN node can perform semi soft handoff while changing its attached AP and provide mobile IP and/or real time service like voice over IP. Also, we have done simulation for evaluation of the performance of the proposed scheme. We show that our semi soft handoff mechanism can be applied for real-time service with no frame loss in mobile environment.

Blocking Performance Evaluation of Trunk Network for Soft Handoffs Between MSC' s in CDMA Cellular Systems (CDMA 이동통신 시스템에서 MSC 간 Soft Handoff 를 위한 트렁크망의 성능분석)

  • Choi, Woo-Yong
    • Journal of Korean Institute of Industrial Engineers
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    • v.26 no.4
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    • pp.336-344
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    • 2000
  • The soft handoffs between two adjacent MSC's should be employed to support the calls requesting handoffs to an MSC while minimizing the undesirable ping pong phenomenon of back-and-forth handoffs between two adjacent cells in conventional hard handoffs. In this paper, the soft handoff scheme between two MSC's is considered using the trunk between the packet routers for the two MSC's. The trunk network is proposed to support the inter-MSC soft handoff scheme in the service area with many MSC's. The probability that a soft handoff to an adjacent MSC will be blocked due to the shortage of the trunk capacity is derived.

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Performance Analysis of Soft Handoff Region Ratio in CDMA System Considering System Capacity and Traffic Load (CDMA망에서 시스템 용량과 트래픽 부하의 변화를 반영한 핸드오프 영역 비율에 대한 성능분석)

  • Jung, Sung-Hwan;Hong, Jung-Wan;Lee, Sang-Cheon;Lie, Chang-Hoon
    • IE interfaces
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    • v.20 no.2
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    • pp.216-226
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    • 2007
  • In code-division multiple-access (CDMA) systems with soft handoff, mobile station (MS) within soft handoff region can use multiple radio channels and receive their signals from multiple base stations (BSs) simultaneously. In this paper, the effects of soft handoff region ratio (SHRR) on reverse link of a CDMA cellular system are analytically investigated. In order to analyze the network performance and quality of service (QoS) perceived by users more realistically, both the soft capacity increasing factor and the traffic load variation affected by SHRR are jointly considered and a two-dimensional continuous time Markov chain (CTMC) model is built. In the numerical example, it is observed that the optimal guard channel exists according the variations of the traffic load and propagation conditions when the proper value of SHRR is determined.

An Efficient Soft Handoff Scheme Using Enhanced Resource Resonation Technique in Wireless MIPv6 Networks

  • Park, Tae-Hyun;Park, Ho-Ryong;Chun, Sang-Hun;Kwak, Kyung-Sup
    • Proceedings of the IEEK Conference
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    • 2002.07a
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    • pp.571-574
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    • 2002
  • In a recent wireless network environments, dynamic host configuration protocol (BHCP) service is used to assign IP addresses to mobile terminals. In IPv6 networks, it is necessary to introduce the concept of handoff to support a seamless service to mobile terminals. In a general soft handoff technique used by code-division multiple acces (CDMA) communication systems, the powers received to base station are simply compared to determine which base station will handle the signal to and from each mobile termins. However, in IPv6 network, to transmit data-oriented services, it is necessary to support an enhanced soft handoff technique with more security and quality of service. In this paper, we propose a scheme to reduce a signaling process of handoff in IPv6 network. Also, we propose a technique to reduce wasted reservation resources and to guarantee quality of service (QoS) using DHCP.

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Effects of soft handoff region ratio on the reverse link capacity of a DS-CDMA cellular system (DS-CDMA 셀룰라 시스템의 역방향 링크에서 소프트 핸드오프 영역비율의 효과)

  • 전형구;권오준;강창언
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.26 no.11B
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    • pp.1534-1539
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    • 2001
  • In this paper, effects of soft handoff region on the reverse link capacity of a DS-CDMA cellular system are investigated. The reverse link capacity of a CDMA cellular system is calculated at a given soft handoff region ratio (SHRR) and path loss model. The results show that the reverse link capacity increases by 1 ∼ 4 channels according to the soft handoff region ratio and the path loss model. However, in the case of the path loss model having a large attenuation exponent ($\mu$ = 5) and a small shadowing standard deviation ( $\sigma$ = 6 dB), the reverse link capacity is no more increased by increasing SHRR.

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A Calculation Method of Handoff Rate using Speed and Direction of Mobile Stations in Cellular Networks (셀룰러 망의 이동국 속도와 방향을 이용한 핸드오프율 계산법)

  • Wu, Mar-Ri;Choi, Yong-Jun;Jung, Young-Seok;Lim, Kyung-Soo;Kim, Chong-Gun
    • Journal of KIISE:Information Networking
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    • v.29 no.4
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    • pp.352-357
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    • 2002
  • In CDMA cellular systems, a handoff process in which the mobile station (MS) can communicate with the target base station without interrupting the communication with the current base station makes contact with the target base station before it breaks with the station it is operating on. An MS requests a soft handoff to a neighbor base station (BS) whenever the pilot strength received from the neighbor BS exceeds the handoff threshold, even though the MS may not actually be approaching to the neighbor BS. Since two traffic channels have to assign to an MS during the soft handoff period, the utilization of traffic channels is wasted. Thus, an analysis of handoff rate is a key to understand and evaluate channel efficiency. In this paper, a simple and straightforward mathematical analysis method for evaluate obtaining direction-based soft handoff rate and the number of handoff calls in CDMA cellular systems is proposed.

Performance Analysis of Cellular IP using Combined Cache and Improved Adaptive Semi-soft Handoff Method (통합 캐시 및 개선된 적응형 세미소프트 핸드오프를 이용한 셀룰러 IP의 성능분석)

  • Choi Jung-Hun;Kim Nam;Jeong Seung-Ho
    • The Journal of the Korea Contents Association
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    • v.4 no.4
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    • pp.113-121
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    • 2004
  • Existing Cellular IP increases the network traffic load, packet loss and handoff latency because of duplicate packet. In this paper, we propose using a Combined Cache that unites a pasing cache with a routing cache and a Improved Adaptive Semi-soft handoff that minimizes to occur the duplicate packet. As a computer simulation, we consider packet loss, handoff latency and traffic load in network. In proportion the number of nodes, mobile hosts and downlinks of node in access network increased, the proposed method is largely improved in comparison with existing Cellular If that uses semi-soft handoff.

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Effect of Soft Handoff Technique on CDMA Cell Coverage in a Lognormally Shadowed Channel (전파음영 채널 환경에서 소프트 핸드오프 기법이 CDMA 셀룰러 시스템의 셀 커버리지에 미치는 영향)

  • Oh, Hyon-Kyu;Kim, Hang-Rae;Kim, Nam
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.12 no.6
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    • pp.871-881
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    • 2001
  • In this paper, the effect of soft handoff technique on CDMA cell coverage is analyzed in a lognormally shadowed channel, which uses the Hata propagation model, Also, the rate of increase for the cell coverage is analyzed by calculating the hard and soft handoff margin. When the outage probability is 0.02 and the standard deviation of the received signal is 2.5 dB in a lognormally shadowed channel, the transmit power of the mobile station which is located in the cell boundary is increased by the hard handoff margin of 5.13 dB and by the soft handoff margin of 3.68 dB, respectively. So, the rate of increase for the cell coverage is 1.39 in case of using the soft handoff technique. It is shown that if the (E$\_$b//N$\_$0/)$\_$req/ value is 7 dB, the cell coverage of the CDMA cellular system with soft handoff technique in city area is 3.33 km in case of the 850 MHz frequency and 1.36 km in case of the 1900 MHz frequency. Also, the accurate cell coverage with soft handoff technique is supported that could be serviced by the base-station in CDMA cellular system.

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Probability Analysis and Performance Improvement Scheme of Handoff in DS-CDMA Cellular Systems (DS-CDMA 셀룰러 시스템에서 핸드오프 유형별 제공률 분석 및 성능 개선 방법)

  • Kwon, Soo-Kun;Jeon, Hyoung-Goo;Cho, Kyung-Rok
    • Journal of the Korean Institute of Telematics and Electronics S
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    • v.35S no.9
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    • pp.1-8
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    • 1998
  • In this paper, we analyze the probability of soft handoff and hard handoff which served in DS-CDMA cellular system, and propose a new handoff control scheme. The object of proposed scheme is to reduce the hard handoff probability of delay sensitive calls which are very sensitive to transmission errors. In this scheme, if soft handoff is not possible, for a delay sensitive call, a delay insensitive call using the same frequency channel that a handoff call is using is handed off to one of other frequency channels and the traffic channel released by delay insensitive call's handoff is assigned to a delay sensitive call for soft handoff. A performance of the proposed scheme was evaluated through computer simulation.

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Call Connection Control in CDMA-Based Mobile Network (CDMA 방식 이동통신망에서의 호 연결 제어)

  • 이상호;박성우
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.24 no.7A
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    • pp.987-995
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    • 1999
  • The handoff is a distinctive characteristic of the mobile networks. In the CDMA systems, if base stations support multiple Frequency Assignment (FA), they provide both soft handoff and hard handoff. Under the CDMA environments, the soft handoff guarantees the favorable service quality and the continuity of call connection without interruption, and increases the service capacity of the base stations. This paper proposes call connection control schemes with handoff queue for supporting efficient handoff processing. The proposed schemes are divided into two categories: single handoff queue scheme and multiple handoff queue scheme. We analyze the performance of the proposed call connection control schemes using numerical analysis. From the analysis results, we can say that it is more desirable to avoid hard handoff as long as handoff queues are used. When a single handoff queue used, adaptive scheme that properly mixes avoidable and avoidable hard handoff method under the given traffic condition is more desirable. In case that multiple handoff queues are used, the suitable trade-off needs to be developed between handoff blocking probability and hard handoff probability to guarantee a given blocking probability threshold.

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