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libshd
- SH_Object libSH的基类 SH_String String类 SH_Array 数据结构Array类 SH_Stack 数据结构Stack类 SH_Queue 数据结构Queue类 SH_List 数据结构List类 SH_Hash 数据结构Hash类 SH_Tree 数据结构Tree(AVL)类 SH_Lock 互斥Lock类 SH_Serial 串口类 SH_Socket 套接字类 SH_Tcp TCP类
P2P_source_code
- 一个p2p Streaming的原型系统,基于树状结构的应用层组播开发。完整的寻径和平衡树算法。-a prototype system, based on the tree structure of the application layer multicast development. Integrity of the routing and balanced tree algorithms.
Agent_Qos_8
- 分布式计算方法用于单组播树查找,利用C编程,相对于其他人工智能方法速度快~-Distributed computing approach for single multicast tree to find, use of C programming, compared to other artificial intelligence methods faster than ~
CDDA
- 实现这个算法需要如下的信息,首先算法要有己形成的多播路由树T 到所有目的节点的最短路信息,为此算法采用一个树组TD 记录已形成的多播路由树到每一个目的节点的最短路消息-The realization of this algorithm needs the following information, first of all algorithms have been formed by multicast routing tree T for all purposes to the most s
maodv-code
- this the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing protocol uses hello messages-this is the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing pr
peertopeermediastreamingvideo
- 目的解决目前网络视频系统带宽要求高、系统伸缩性差、大规模用户同时在线时的服务器瓶颈等问题,提出基于P2P流媒体的网络视频系统设计方案。方法将对等网络(P2P)理论应用到流媒体系统中,采用混合网络模式,运用应用层组播技术和区域自治思想构建组播树,根据实际情况对组播树进行动态调整,采用适合的缓存机制实现媒体数据的平稳传输。结果通过对系统设计中的关键技术进行分析,采用P2P流媒体技术的网络视频系统在扩展性、服务器带宽要求、视频播放质量等方面都有了极大的改善。结论在不改变现有网络带宽下,P2P流媒体技术
code_4node
- 对基于网络编码的分享组播树的c++源代码,能实现-Based on network coding share multicast tree c++ code, can achieve
rfc5015.txt
- This document discusses Bidirectional PIM (BIDIR-PIM), a variant of PIM Sparse-Mode that builds bidirectional shared trees connecting multicast sources and receivers. Bidirectional trees are built using a fail-safe Designated Forwarder (DF) ele
multicast_1
- MPH以及扩展后的EMPH算法,能返回组播树以及每一条路径-MPH and extended EMPH algorithm, can return the multicast tree and every path
mptcp.patch
- this the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing protocol uses hello messages- this is the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing
wrls-aodv
- this the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing protocol uses hello messages- this is the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing
pimdm
- this the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing protocol uses hello messages- this is the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing
mptcp-sample
- this the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing protocol uses hello messages- this is the multicast extension of the adhoc routing protocol in the ns2 extension. It is a tree based routing
ACA_QoS_MR
- QoS组播路由问题的蚁群算法通用Matlab源码。输出参数列表为:最优组播树最优组;播树所有的边;最优组播树的费用-QoS multicast routing problem ant colony algorithm General Matlab source code. The list of output parameters: the optimal multicast tree optimal group multicast tree all sides optimal multic
123
- 提出了一种双域模型人工鱼群算法。算法采用前驱节点指向的编码方法形成多播树表示人工鱼,将搜索 空间分为可行域和非可行域。分别赋予可行域和非可行域的人工鱼不同的游动目标,设计行为算子自适应地执行 4 种人工鱼行为。数值实验结果表明,提出的算法可以有效利用非可行个体,具有较好的求解时延约束最小代价 多播树的性能。-An artificial fish swarm algorithm with two regions model was proposed. The algor ithm us
ACA_QoS_MR
- ACA_QoS_MR时蚁群算法在组播路由中的应用,输出最优组播树(01邻接矩阵表示),最优组播树所有的边,最优组播树的费用-ACA_QoS_MR ant colony algorithm for multicast routing output optimal multicast tree (01 adjacency matrix), all the edges of the optimal multicast tree, the optimal multicast tree cost
Fat-Tree
- 基于opnet的胖树多播网络仿真,主要为多播算法的仿真,程序较完善-Opnet fat tree multicast network simulation, primarily for multicast algorithm based simulation program better
60GHz_multicast-master
- 在本文中,我们设计,实施和实验性地评估可扩展定向多播(SDM)技术,以1)通过部分遍历码本树以每波束每客户端RSSI测量来训练接入点。培训平衡了收集足够数据以形成有效波束组的限制开销的目标。 2)利用可用的训练信息,设计了一种近似最小组播组数据传输时间的可扩展波束分组算法。(In this paper, we design, implement and experimentally evaluate scalable directional multicast (SDM) technology