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Featured researches published by Kazunobu Konishi.


consumer communications and networking conference | 2007

Demonstration of the Prototype of the Network Camera with Sender Initiated Congestion Control

Eiichi Muramoto; Takahiro Yoneda; Kazunobu Konishi

We demonstrate the prototype of the network camera with a multicast transport-layer protocol called Sender Initiated Congestion Control (SICC) which provides adaptive flow control for multicast methods such as Application Layer Multicast (ALM) or eXplicit multi-unicast6 (XCAST6). SICC is capable of achieving fast congestion avoidance and significantly increases throughput at receivers while still remaining TCP friendly. We verified the applicability to small appliance by implementing SICC/XCAST6 on a prototype network camera We demonstrate the prototype of network camera and receiver terminals with viewer. It shows the capability of adaptive flow control to multiple receivers with or without competing traffics.


consumer communications and networking conference | 2007

Design and Implementation of Sender Initiated Congestion Control

Eiichi Muramoto; Takahiro Yoneda; Kazunobu Konishi

This paper reports the design and implementation of a multicast transport-layer protocol called Sender Initiated Congestion Control (SICC) which provides adaptive flow control for multicast methods such as Application Layer Multicast (ALM) or eXplicit multi-unicast (XCAST). SICC is a NAK based protocol and is designed to be extensible to adapt to various codecs, able to handle variable length of application data units (ADU) and to notify availability of ADU at the receiver for real-time streaming. We have implemented SICC in both user space on NetBSD and kernel space on Linux 2.6.10, and have used these implementations to evaluate TCP fairness. The results show the fairly shared bandwidth with 128 competing TCP flows with 1ms timer accuracy in various RTT. We also verified the applicability to small appliance by implementing SICC/XCAST6 on a prototype network camera and evaluated SICC in a field experiment.


Archive | 2007

FLOW CONTROL METHOD, TRANSMITTING TERMINAL DEVICE USED IN SAME, RECEIVING TERMINAL DEVICE AND PACKET TRANSFER SYSTEM

Eiichi Muramoto; Takahiro Yoneda; Kazunobu Konishi


Archive | 2013

Receiving terminal and receiving method

Eiichi Muramoto; Kazunobu Konishi; Takahiro Yoneda; Masashi Kobayashi; Ichiro Takei; Taisuke Matsumoto


Archive | 2010

Path setting device and path setting method

Eiichi Muramoto; Naoyuki Mochida; Ryutaro Ono; Kazunobu Konishi


Archive | 2007

Communication terminal and retransmission request method

Kazunobu Konishi; Eiichi Muramoto; Takahiro Yoneda


Archive | 2006

Transmitting apparatus and transmitting method

Eiichi Muramoto; Takahiro Yoneda; Kazunobu Konishi; Chih-Chang Hsu


Archive | 2008

DATA TRANSMITTING APPARATUS AND DATA RETRANSMITTING METHOD

Kazunobu Konishi; Eiichi Muramoto; Takahiro Yoneda; Ichiro Takei; Masashi Kobayashi; Taisuke Matsumoto


Archive | 2006

Transmitting apparatus and transmission rate control method

Kazunobu Konishi; Eiichi Muramoto; Takahiro Yoneda


Archive | 2015

DATA RELAY APPARATUS AND METHOD, SERVER APPARATUS, AND DATA SENDING METHOD

Takahiro Yoneda; Eiichi Muramoto; Ryota Ohnishi; Kazunobu Konishi

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