现有的多组组密钥管理方案应用于大型动态卫星多组组播环境时,受卫星资源的限制,密钥管理效率成为瓶颈。设计了一种卫星多组组密钥管理方案SMGKM(Satellite Multiple Group Key Management),根据对组播源的访问能力对用户进行分组,并在...现有的多组组密钥管理方案应用于大型动态卫星多组组播环境时,受卫星资源的限制,密钥管理效率成为瓶颈。设计了一种卫星多组组密钥管理方案SMGKM(Satellite Multiple Group Key Management),根据对组播源的访问能力对用户进行分组,并在子组中设置子组管理者,通过构造组播密钥管理图和子组密钥管理结构进行多组组密钥管理,具有良好的前向和后向安全性,与现有典型方案相比,SMGKM有效降低了卫星的通信和存储开销,更适合大型动态卫星多组组密钥管理。展开更多
在卫星测试地面网络中采用 IP 组播的形式实现测试信息的发布,可以提高网络传输效率,节省网络资源。该文分析了 IP 组播(Multicast)的优点,介绍了 IP 组播的特点及传递模型、网络层支持的组播协议等。还分析了接收端工程实现的难点,提...在卫星测试地面网络中采用 IP 组播的形式实现测试信息的发布,可以提高网络传输效率,节省网络资源。该文分析了 IP 组播(Multicast)的优点,介绍了 IP 组播的特点及传递模型、网络层支持的组播协议等。还分析了接收端工程实现的难点,提出了解决方法,给出了实现 IP 组播的发送端和接收端程序设计步骤。展开更多
In traditional wireless broadcast networks,a corrupted packet must be retransmitted even if it has been lost by only one receiver.Obviously,this is not bandwidth-efficient for the receivers that already hold the retra...In traditional wireless broadcast networks,a corrupted packet must be retransmitted even if it has been lost by only one receiver.Obviously,this is not bandwidth-efficient for the receivers that already hold the retransmitted packet.Therefore,it is important to develop a method to realise efficient broadcast transmission.Network coding is a promising technique in this scenario.However,none of the proposed schemes achieves both high transmission efficiency and low computational complexity simultaneously so far.To address this problem,a novel Efficient Opportunistic Network Coding Retransmission(EONCR)scheme is proposed in this paper.This scheme employs a new packet scheduling algorithm which uses a Packet Distribution Matrix(PDM)directly to select the coded packets.The analysis and simulation results indicate that transmission efficiency of EONCR is over 0.1,more than the schemes proposed previously in some simulation conditions,and the computational overhead is reduced substantially.Hence,it has great application prospects in wireless broadcast networks,especially energyand bandwidth-limited systems such as satellite broadcast systems and Planetary Networks(PNs).展开更多
文摘现有的多组组密钥管理方案应用于大型动态卫星多组组播环境时,受卫星资源的限制,密钥管理效率成为瓶颈。设计了一种卫星多组组密钥管理方案SMGKM(Satellite Multiple Group Key Management),根据对组播源的访问能力对用户进行分组,并在子组中设置子组管理者,通过构造组播密钥管理图和子组密钥管理结构进行多组组密钥管理,具有良好的前向和后向安全性,与现有典型方案相比,SMGKM有效降低了卫星的通信和存储开销,更适合大型动态卫星多组组密钥管理。
文摘在卫星测试地面网络中采用 IP 组播的形式实现测试信息的发布,可以提高网络传输效率,节省网络资源。该文分析了 IP 组播(Multicast)的优点,介绍了 IP 组播的特点及传递模型、网络层支持的组播协议等。还分析了接收端工程实现的难点,提出了解决方法,给出了实现 IP 组播的发送端和接收端程序设计步骤。
基金supported in part by the National Natural Science Foundation of China under Grant No. 61032004the National High Technical Research and Development Program of China (863 Program) under Grants No. 2012AA121605,No. 2012AA01A503,No.2012AA01A510
文摘In traditional wireless broadcast networks,a corrupted packet must be retransmitted even if it has been lost by only one receiver.Obviously,this is not bandwidth-efficient for the receivers that already hold the retransmitted packet.Therefore,it is important to develop a method to realise efficient broadcast transmission.Network coding is a promising technique in this scenario.However,none of the proposed schemes achieves both high transmission efficiency and low computational complexity simultaneously so far.To address this problem,a novel Efficient Opportunistic Network Coding Retransmission(EONCR)scheme is proposed in this paper.This scheme employs a new packet scheduling algorithm which uses a Packet Distribution Matrix(PDM)directly to select the coded packets.The analysis and simulation results indicate that transmission efficiency of EONCR is over 0.1,more than the schemes proposed previously in some simulation conditions,and the computational overhead is reduced substantially.Hence,it has great application prospects in wireless broadcast networks,especially energyand bandwidth-limited systems such as satellite broadcast systems and Planetary Networks(PNs).