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TCP performance for Satellite M2M applications over Random Access links

机译:随机接入链路的卫星M2M应用中的TCP性能

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Contention Resolution Diversity Slotted ALOHA (CRDSA) random access scheme, introduced in the DVB-RCS2/NG standard, is specifically designed to support the transfer of a variety of traffic profiles that Machine to Machine (M2M) and Internet of Things (IoT) applications may generate. Protocols for M2M and IoT has recently receiver substantial upgrades, but still mainly designed with an underlying terrestrial network in mind. If clusters of sensor nodes exchange data via satellite terminals toward a sink via short-lived TCP/IP connections, many shortcomings may incur. This work aims at investigating in details the behavior for such data transfer in presence of a shared random access channel, and the advantages when using a new TCP version specifically designed for satellite links, namely TCP Wave. In particular, through a detailed simulation campaign based on the NS3 simulator, this work assesses the completion time of data delivery for M2M elastic traffic via CRDSA satellite random access, when standard TCP (NewReno) or dedicated satellite TCP (Wave) is adopted.
机译:争用解决多样性时隙ALOHA(CRDSA)随机接入方案,在DVB-RCS2 / NG标准的出台,是专门设计用来支持多种业务配置文件的传输是机器对机器(M2M)和物联网(IOT)应用可能产生。对于M2M物联网和协议已于近日接收了重大改进,但仍主要是设计时考虑到底层地面网络。如果传感器节点的集群经由卫星终端向水槽通过短暂的TCP / IP连接进行数据交换,许多缺点可能招致。这项工作的目的是在细节中共享随机接入信道的存在这样的数据传输行为调查,其优点使用专门为卫星链路,即TCP波设计了一种新的TCP版本时。具体地,通过基于所述NS3模拟器一个详细的模拟运动,这项工作评估经由CRDSA卫星随机访问,数据递送M2M弹性流量的结束时刻时的标准TCP(NewReno中)或专用卫星TCP(波)被采用。

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