{"title":"面向未来4G移动系统的移动多媒体城域网架构","authors":"P. T. Hoa, M. Eusuf, T. Yamada","doi":"10.1109/CCE.2006.350859","DOIUrl":null,"url":null,"abstract":"One of objectives of the future 4G mobile network is to provide broadband connection to mobile users regardless of their speed. Microcellular-based mobile networks must be an essential one in the 4G mobile generation from the view of rich radio resource for multimedia communications. This paper presents the architecture of MM-MAN (mobile multimedia metropolitan area network) network of which target is to become one of mobile network candidates for the 4G systems. In this mobile network, high-bit rate packet transfer is stably guaranteed even to FMTs (fast moving terminals) by the operation of an LMC (logical macro cell) and parallel polling. The mechanism easily allows 5Mbps packet transfer to terminals with speed of 100km/h. To enable synchronization of parallel polling, ACK of polling is multicast to BSs in the same LMC through the backbone network. The time the polling ACK multicast transmitted in the terrestrial network is a significant factor that will decide the throughput of mobile terminals. Owing to PON (passive optical network), which constructs the terrestrial network of MM-MAN, parallel polling and LMC can be done easily. A key advantage of PON over MM-MAN is its high bandwidth broadcast functionality that can turn into multicast without vulnerability to its bandwidth is used to enable parallel polling and the LMC operation. In the case of EPON with static slot allocation scheme, ACK multicast time depends on the grant time for each ONU and the number of ONUs connected to an OLT on one fiber. From our evaluation, if the ACK multicast delivered in PON from 0.5 to 4ms, the throughput that a mobile terminal can get is from 25Mbps to 5Mbps for the case of 1500bytes of packet size. The PON system can work adaptively to fasten ACK multicast if the number of ONUs on which a base station stands connected to an optical line terminal (OLT) is 16.","PeriodicalId":148533,"journal":{"name":"2006 First International Conference on Communications and Electronics","volume":"60 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2006-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"The Architecture of Mobile Multimedia Metropolitan Area Network towards the Future of the 4G Mobile System\",\"authors\":\"P. T. Hoa, M. Eusuf, T. Yamada\",\"doi\":\"10.1109/CCE.2006.350859\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"One of objectives of the future 4G mobile network is to provide broadband connection to mobile users regardless of their speed. Microcellular-based mobile networks must be an essential one in the 4G mobile generation from the view of rich radio resource for multimedia communications. This paper presents the architecture of MM-MAN (mobile multimedia metropolitan area network) network of which target is to become one of mobile network candidates for the 4G systems. In this mobile network, high-bit rate packet transfer is stably guaranteed even to FMTs (fast moving terminals) by the operation of an LMC (logical macro cell) and parallel polling. The mechanism easily allows 5Mbps packet transfer to terminals with speed of 100km/h. To enable synchronization of parallel polling, ACK of polling is multicast to BSs in the same LMC through the backbone network. The time the polling ACK multicast transmitted in the terrestrial network is a significant factor that will decide the throughput of mobile terminals. Owing to PON (passive optical network), which constructs the terrestrial network of MM-MAN, parallel polling and LMC can be done easily. A key advantage of PON over MM-MAN is its high bandwidth broadcast functionality that can turn into multicast without vulnerability to its bandwidth is used to enable parallel polling and the LMC operation. In the case of EPON with static slot allocation scheme, ACK multicast time depends on the grant time for each ONU and the number of ONUs connected to an OLT on one fiber. From our evaluation, if the ACK multicast delivered in PON from 0.5 to 4ms, the throughput that a mobile terminal can get is from 25Mbps to 5Mbps for the case of 1500bytes of packet size. 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引用次数: 0
摘要
未来4G移动网络的目标之一是为移动用户提供宽带连接,而不管他们的速度如何。从丰富的多媒体通信无线资源来看,基于微蜂窝的移动网络必然是4G移动时代必不可少的网络。本文提出了移动多媒体城域网(MM-MAN)的网络结构,其目标是成为4G系统的移动候选网之一。在这种移动网络中,通过逻辑宏单元(LMC)和并行轮询的操作,即使对FMTs(快速移动终端)也能稳定地保证高比特率的数据包传输。该机制可以轻松地将5Mbps的数据包传输到速度为100km/h的终端。为了实现并行轮询的同步,轮询的ACK通过骨干网组播给同一LMC中的BSs。轮询ACK组播在地面网络中的传输时间是决定移动终端吞吐量的重要因素。由于无源光网络PON (passive optical network)构成了MM-MAN地面网络,使得并行轮询和LMC可以很容易地实现。PON相对于MM-MAN的一个关键优势是它的高带宽广播功能,可以转换成多播而不受带宽的影响,用于实现并行轮询和LMC操作。对于采用静态时隙分配方案的EPON, ACK组播时间取决于每个ONU的授予时间和一根光纤连接到OLT上的ONU数量。从我们的评估来看,如果在PON中发送的ACK组播从0.5到4ms,在1500字节的数据包大小的情况下,移动终端可以获得的吞吐量从25Mbps到5Mbps。当一个基站连接到OLT (optical line terminal)的onu个数为16时,PON系统可以自适应地实现ACK组播。
The Architecture of Mobile Multimedia Metropolitan Area Network towards the Future of the 4G Mobile System
One of objectives of the future 4G mobile network is to provide broadband connection to mobile users regardless of their speed. Microcellular-based mobile networks must be an essential one in the 4G mobile generation from the view of rich radio resource for multimedia communications. This paper presents the architecture of MM-MAN (mobile multimedia metropolitan area network) network of which target is to become one of mobile network candidates for the 4G systems. In this mobile network, high-bit rate packet transfer is stably guaranteed even to FMTs (fast moving terminals) by the operation of an LMC (logical macro cell) and parallel polling. The mechanism easily allows 5Mbps packet transfer to terminals with speed of 100km/h. To enable synchronization of parallel polling, ACK of polling is multicast to BSs in the same LMC through the backbone network. The time the polling ACK multicast transmitted in the terrestrial network is a significant factor that will decide the throughput of mobile terminals. Owing to PON (passive optical network), which constructs the terrestrial network of MM-MAN, parallel polling and LMC can be done easily. A key advantage of PON over MM-MAN is its high bandwidth broadcast functionality that can turn into multicast without vulnerability to its bandwidth is used to enable parallel polling and the LMC operation. In the case of EPON with static slot allocation scheme, ACK multicast time depends on the grant time for each ONU and the number of ONUs connected to an OLT on one fiber. From our evaluation, if the ACK multicast delivered in PON from 0.5 to 4ms, the throughput that a mobile terminal can get is from 25Mbps to 5Mbps for the case of 1500bytes of packet size. The PON system can work adaptively to fasten ACK multicast if the number of ONUs on which a base station stands connected to an optical line terminal (OLT) is 16.