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PICCO: PROTOCOL INDEPENDENT CONGESTION CONTROL METHOD USING MOBILE RELAYS FOR AD-HOC NETWORKS

机译:PICCO:协议独立拥塞控制方法使用移动继电器进行Ad-hoc网络

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The limited lifetime of batteries and the bandwidth limitation of channels are the major issues in Ad-hoc networks. The term Congestion is usually associated with the bandwidth issues. The bandwidth keeps varying and when there is insufficient bandwidth to satisfy the demand, we say we have a congestion problem. Congestion control methods are partially implemented in the network elements (e.g.: routers) inside the network and partially in the transport protocols running on the end hosts. All congestion control methods were developed depending on the underlying transport protocol TCP and hence cannot be used when the underlying transport protocol changes to UDP. In real time applications, where UDP is mostly used with Real time Transport Protocol (RTP), lost data packets cannot be resent. So it becomes all the more critical to have a proper congestion control method which can be used by UDP as well. PICCO method to solve the congestion problem can be implemented only in the network elements and is independent of the underlying transport protocols. Hence it can be used for TCP as well as UDP. This method reduces the number of packets being dropped in the network, thus improving the overall performance of the network.
机译:电池的有限寿命和渠道的带宽限制是Ad-hoc网络中的主要问题。术语拥塞通常与带宽问题相关联。带宽保持变化,当带宽不足以满足需求时,我们说我们有一个拥塞问题。拥塞控制方法在网络内的网络元素(例如:路由器)中部分地实现,部分在终端主机上运行的传输协议中。所有拥塞控制方法都是根据底层传输协议TCP开发的,因此在底层传输协议对UDP的变化时,不能使用。在实时应用程序中,其中UDP大多数与实时传输协议(RTP)一起使用,丢失的数据包不能怨恨。因此,具有可以由UDP使用的适当拥塞控制方法变得更为重要。用于解决拥塞问题的PICCO方法只能在网络元素中实现,并且独立于底层传输协议。因此它可以用于TCP以及UDP。此方法减少了网络中丢弃的数据包数,从而提高了网络的整体性能。

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