发明授权
- 专利标题: Self-healing data transmission system and method to achieve deterministic and lower latency
- 专利标题(中): 自愈数据传输系统和方法实现确定性和较低延迟
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申请号: US14484910申请日: 2014-09-12
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公开(公告)号: US08964739B1公开(公告)日: 2015-02-24
- 发明人: Daniel J. Wisehart
- 申请人: SMG Holdings—Anova Technologies, LLC
- 申请人地址: US IL Chicago
- 专利权人: SMG Holdings—Anova Technologies, LLC
- 当前专利权人: SMG Holdings—Anova Technologies, LLC
- 当前专利权人地址: US IL Chicago
- 代理机构: Loeb & Loeb LLP
- 主分类号: H04L12/28
- IPC分类号: H04L12/28 ; H04L12/56 ; H04L12/721 ; H04L12/931 ; H04J3/16
摘要:
The invention provides a method of simulcasting data fragments sent over a first packet-switched computer network to a trunk network and redistributed over a second packet-switched computer network. A method is provided comprising the steps of providing a trunk network including multiple links including an RF link and a fiber link, wherein all the transmission links transmit data packets to a receiver which will redistribute the earliest data packets with a matching frame check sequence (FCS) over the second packet switched computer network. The method provides for a sender for adding an incremental sender sequence number and sender FCS to the data packets, creating a sender data packet. Transmitting a sender data packet, simulcast over the transmission links, receiving, by a receiver, via the fastest links which may drop or change some bits unintentionally, a sender data packet and receiving, by the receiver, via slower links which are unlikely to drop or change some bits unintentionally, a sender data packet. The method provides for checking, by the receiver, a receiver calculated FCS of the received sender data packet and comparing them to the sender FCS that was added by the sender. Transmitting over the second packet-switched computer network, the first sender data packet with the next sequence number increment after the incremental sender sequence number and verifying sender FCS, verifying, by the receiver, the sender data packets and identifying, by the receiver, a gap between sender data packets, queueing up verified sender data packets when there is a gap in the verified sender data packets and sending all verified sender data packets in sequence order, once the gap is filled by any transmission link.
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