The Experts below are selected from a list of 42 Experts worldwide ranked by ideXlab platform

Lathifah Fatharani - One of the best experts on this subject based on the ideXlab platform.

  • ANALISIS PERBANDINGAN LINK STATE ADVERTISEMENT (LSA) TRAFFIC PADA OSPFV3 SINGLE AREA DAN MULTI AREA
    [Yogyakarta] : Universitas Gadjah Mada, 2014
    Co-Authors: Lathifah Fatharani, Sri Suning Kusumawardani, S.t. M.t.
    Abstract:

    Exhaustion of IPv4 address made a new addressing mechanism called IPv6. Those new mechanism also made new routing protocol, for example: OSPFv3. OSPFv3 is well-known and scalable routing protocol. Router in OSPFv3 use Link State Advertisement (LSA) to communicate with each other. But, if the topology getting large, it can cause enormous LSA flooding and make convergence time more slowly. OSPFv3 with multiple area (multi area) topology is designed to overcome those problem. This research will consider LSA traffic when the topology is configured in single area and multi area. The result is reduction of LSA number. Number of LSA reduction for an Internal Router which has non-summarized Area Border Router (ABR) is 37,93%. While number of LSA reduction for an Internal Router which has summarized ABR is 68,1%. It is proved that OSPFv3 multi area topology can reduce the number of LSA traffic

  • ANALISIS PERBANDINGAN LINK STATE ADVERTISEMENT (LSA) TRAFFIC PADA OSPFV3 SINGLE AREA DAN MULTI AREA
    2014
    Co-Authors: Lathifah Fatharani, S.t. Sri Suning Kusumawardani
    Abstract:

    Mulai terbatasnya jumlah alamat IPv4 menyebabkan munculnya mekanisme pengalamatan baru dengan IPv6. Adanya sistem pengalamatan baru tersebut juga memunculkan protokol routing baru, salah satunya adalah OSPFv3. OSPFv3 ini dikenal sebagai protokol routing yang handal. Dalam berkomunikasi, Router saling mempertukarkan Link State Advertisement (LSA). Namun, apabila topologi yang dirancang semakin besar, akan menimbulkan LSA flooding yang tidak terkendali dan berefek pada lamanya waktu konvergensi. Untuk mengatasi masalah tersebut, dirancang topologi OSPFv3 yang dikonfigurasi dengan banyak area (multi area). Penulis akan membandingkan LSA traffic ketika topologi dikonfigurasi dengan hanya OSPFv3 single area saja dan dikonfigurasi dengan OSPFv3 multi area. Dari penelitian ini didapatkan hasil penurunan jumlah LSA. Untuk Internal Router yang ABR-nya tidak melakukan summarize, penurunan LSA sebesar 37,93%. Sedangkan untuk Internal Router yang ABR-nya melakukan summarize, penurunan LSA sebesar 68,1%. Terbukti dengan topologi multi area dapat mengurangi jumlah LSA traffic pada OSPFv3. Exhaustion of IPv4 address made a new addressing mechanism called IPv6. Those new mechanism also made new routing protocol, for example: OSPFv3. OSPFv3 is well-known and scalable routing protocol. Router in OSPFv3 use Link State Advertisement (LSA) to communicate with each other. But, if the topology getting large, it can cause enormous LSA flooding and make convergence time more slowly. OSPFv3 with multiple area (multi area) topology is designed to overcome those problem. This research will consider LSA traffic when the topology is configured in single area and multi area. The result is reduction of LSA number. Number of LSA reduction for an Internal Router which has non-summarized Area Border Router (ABR) is 37,93%. While number of LSA reduction for an Internal Router which has summarized ABR is 68,1%. It is proved that OSPFv3 multi area topology can reduce the number of LSA traffic.

Timothy Mark Pinkston - One of the best experts on this subject based on the ideXlab platform.

  • IPPS - Crossbar analysis for optimal deadlock recovery Router architecture
    Proceedings 11th International Parallel Processing Symposium, 1
    Co-Authors: Y. Choi, Timothy Mark Pinkston
    Abstract:

    We explore the design of optimal deadlock recovery-based fully adaptive Routers by evaluating promising Internal Router crossbar designs. Unified and decoupled crossbar designs aimed at exploiting the full capabilities of adaptive routing are evaluated by analyzing their effect on overall network performance. We show that an enhanced hierarchical crossbar design that supports routing locality in virtual network class achieves highest performance with relatively low cost.

S.t. Sri Suning Kusumawardani - One of the best experts on this subject based on the ideXlab platform.

  • ANALISIS PERBANDINGAN LINK STATE ADVERTISEMENT (LSA) TRAFFIC PADA OSPFV3 SINGLE AREA DAN MULTI AREA
    2014
    Co-Authors: Lathifah Fatharani, S.t. Sri Suning Kusumawardani
    Abstract:

    Mulai terbatasnya jumlah alamat IPv4 menyebabkan munculnya mekanisme pengalamatan baru dengan IPv6. Adanya sistem pengalamatan baru tersebut juga memunculkan protokol routing baru, salah satunya adalah OSPFv3. OSPFv3 ini dikenal sebagai protokol routing yang handal. Dalam berkomunikasi, Router saling mempertukarkan Link State Advertisement (LSA). Namun, apabila topologi yang dirancang semakin besar, akan menimbulkan LSA flooding yang tidak terkendali dan berefek pada lamanya waktu konvergensi. Untuk mengatasi masalah tersebut, dirancang topologi OSPFv3 yang dikonfigurasi dengan banyak area (multi area). Penulis akan membandingkan LSA traffic ketika topologi dikonfigurasi dengan hanya OSPFv3 single area saja dan dikonfigurasi dengan OSPFv3 multi area. Dari penelitian ini didapatkan hasil penurunan jumlah LSA. Untuk Internal Router yang ABR-nya tidak melakukan summarize, penurunan LSA sebesar 37,93%. Sedangkan untuk Internal Router yang ABR-nya melakukan summarize, penurunan LSA sebesar 68,1%. Terbukti dengan topologi multi area dapat mengurangi jumlah LSA traffic pada OSPFv3. Exhaustion of IPv4 address made a new addressing mechanism called IPv6. Those new mechanism also made new routing protocol, for example: OSPFv3. OSPFv3 is well-known and scalable routing protocol. Router in OSPFv3 use Link State Advertisement (LSA) to communicate with each other. But, if the topology getting large, it can cause enormous LSA flooding and make convergence time more slowly. OSPFv3 with multiple area (multi area) topology is designed to overcome those problem. This research will consider LSA traffic when the topology is configured in single area and multi area. The result is reduction of LSA number. Number of LSA reduction for an Internal Router which has non-summarized Area Border Router (ABR) is 37,93%. While number of LSA reduction for an Internal Router which has summarized ABR is 68,1%. It is proved that OSPFv3 multi area topology can reduce the number of LSA traffic.

Sri Suning Kusumawardani, S.t. M.t. - One of the best experts on this subject based on the ideXlab platform.

  • ANALISIS PERBANDINGAN LINK STATE ADVERTISEMENT (LSA) TRAFFIC PADA OSPFV3 SINGLE AREA DAN MULTI AREA
    [Yogyakarta] : Universitas Gadjah Mada, 2014
    Co-Authors: Lathifah Fatharani, Sri Suning Kusumawardani, S.t. M.t.
    Abstract:

    Exhaustion of IPv4 address made a new addressing mechanism called IPv6. Those new mechanism also made new routing protocol, for example: OSPFv3. OSPFv3 is well-known and scalable routing protocol. Router in OSPFv3 use Link State Advertisement (LSA) to communicate with each other. But, if the topology getting large, it can cause enormous LSA flooding and make convergence time more slowly. OSPFv3 with multiple area (multi area) topology is designed to overcome those problem. This research will consider LSA traffic when the topology is configured in single area and multi area. The result is reduction of LSA number. Number of LSA reduction for an Internal Router which has non-summarized Area Border Router (ABR) is 37,93%. While number of LSA reduction for an Internal Router which has summarized ABR is 68,1%. It is proved that OSPFv3 multi area topology can reduce the number of LSA traffic

Y. Choi - One of the best experts on this subject based on the ideXlab platform.

  • IPPS - Crossbar analysis for optimal deadlock recovery Router architecture
    Proceedings 11th International Parallel Processing Symposium, 1
    Co-Authors: Y. Choi, Timothy Mark Pinkston
    Abstract:

    We explore the design of optimal deadlock recovery-based fully adaptive Routers by evaluating promising Internal Router crossbar designs. Unified and decoupled crossbar designs aimed at exploiting the full capabilities of adaptive routing are evaluated by analyzing their effect on overall network performance. We show that an enhanced hierarchical crossbar design that supports routing locality in virtual network class achieves highest performance with relatively low cost.