传统的DWRR(defic itwe ighted round rob in)调度算法不能满足变速率实时多媒体业务时延要求.为此,提出了改进的DWRR调度算法(improved DWRR).该算法在DWRR的轮询过程中插入1个新的服务优先等级,从而有效地保证变速率实时多媒体业务的...传统的DWRR(defic itwe ighted round rob in)调度算法不能满足变速率实时多媒体业务时延要求.为此,提出了改进的DWRR调度算法(improved DWRR).该算法在DWRR的轮询过程中插入1个新的服务优先等级,从而有效地保证变速率实时多媒体业务的时延要求,并且也可有效地调度非实时业务.仿真结果表明,对变速率多媒体实时业务,改进的DWRR算法的平均队列时延为3.4 m s,比传统DWRR算法的平均队列时延(4.9 m s)降低了30.6%.展开更多
A novel technique called physical frame time-slot switching (PFTS) is discussed and its technical and application aspects are analyzed. The format of the ethernet media access control (MAC) frame is borrowed in de...A novel technique called physical frame time-slot switching (PFTS) is discussed and its technical and application aspects are analyzed. The format of the ethernet media access control (MAC) frame is borrowed in defining the physical frame for PFTS and the transmission time for the maximum size of the MAC frame is defined as a physical frame time-slot (PFT). Consequently, user data can be fed into PFTS and switched in a single layer sub-network in an asynchronous mode.展开更多
文摘传统的DWRR(defic itwe ighted round rob in)调度算法不能满足变速率实时多媒体业务时延要求.为此,提出了改进的DWRR调度算法(improved DWRR).该算法在DWRR的轮询过程中插入1个新的服务优先等级,从而有效地保证变速率实时多媒体业务的时延要求,并且也可有效地调度非实时业务.仿真结果表明,对变速率多媒体实时业务,改进的DWRR算法的平均队列时延为3.4 m s,比传统DWRR算法的平均队列时延(4.9 m s)降低了30.6%.
基金Supported by National Natural Science Foundation of China (No. 60372065)
文摘A novel technique called physical frame time-slot switching (PFTS) is discussed and its technical and application aspects are analyzed. The format of the ethernet media access control (MAC) frame is borrowed in defining the physical frame for PFTS and the transmission time for the maximum size of the MAC frame is defined as a physical frame time-slot (PFT). Consequently, user data can be fed into PFTS and switched in a single layer sub-network in an asynchronous mode.