计算机技术与发展
計算機技術與髮展
계산궤기술여발전
COMPUTER TECHNOLOGY AND DEVELOPMENT
2014年
12期
6-10
,共5页
移动IPv6%预测%优先级缓存%NS-2
移動IPv6%預測%優先級緩存%NS-2
이동IPv6%예측%우선급완존%NS-2
mobile IPv6%forecast%priority cache%NS-2
为了提升移动IPv6的切换性能,保证实时性要求高的音频、视频等业务的服务质量,针对去除DAD过程的RD-MIPv6方案未考虑在传输速率相对较慢的无线信道中,移动节点向NAR本地注册所产生的时延以及切换过程中引入的丢包问题,提出一种优化方案PCRD-MIPv6。 PCRD-MIPv6方案结合基于L2触发的切换预测和数据包优先级缓存机制,在L2切换完成之前向移动节点MN维护的接入路由器缓存列表T AR中的所有AR发送MOA实现本地注册,与此同时,将切换过程中的数据包按优先级缓存在PAR中,在切换完成后发往移动节点,从而减少切换过程中的丢包率。 NS-2仿真结果表明,PCRD-MIPv6方案有效地减少了切换时延,降低了切换过程中的丢包率。
為瞭提升移動IPv6的切換性能,保證實時性要求高的音頻、視頻等業務的服務質量,針對去除DAD過程的RD-MIPv6方案未攷慮在傳輸速率相對較慢的無線信道中,移動節點嚮NAR本地註冊所產生的時延以及切換過程中引入的丟包問題,提齣一種優化方案PCRD-MIPv6。 PCRD-MIPv6方案結閤基于L2觸髮的切換預測和數據包優先級緩存機製,在L2切換完成之前嚮移動節點MN維護的接入路由器緩存列錶T AR中的所有AR髮送MOA實現本地註冊,與此同時,將切換過程中的數據包按優先級緩存在PAR中,在切換完成後髮往移動節點,從而減少切換過程中的丟包率。 NS-2倣真結果錶明,PCRD-MIPv6方案有效地減少瞭切換時延,降低瞭切換過程中的丟包率。
위료제승이동IPv6적절환성능,보증실시성요구고적음빈、시빈등업무적복무질량,침대거제DAD과정적RD-MIPv6방안미고필재전수속솔상대교만적무선신도중,이동절점향NAR본지주책소산생적시연이급절환과정중인입적주포문제,제출일충우화방안PCRD-MIPv6。 PCRD-MIPv6방안결합기우L2촉발적절환예측화수거포우선급완존궤제,재L2절환완성지전향이동절점MN유호적접입로유기완존렬표T AR중적소유AR발송MOA실현본지주책,여차동시,장절환과정중적수거포안우선급완존재PAR중,재절환완성후발왕이동절점,종이감소절환과정중적주포솔。 NS-2방진결과표명,PCRD-MIPv6방안유효지감소료절환시연,강저료절환과정중적주포솔。
In order to improve the performance of handover in MIPv6,ensure the service quality of high real-time requirements service like audio,video and so on,aiming at the problem that the mobile node registering to the NAR may get time delay and packet loss in the handover progress has not been taken into consideration in the wireless channel of which the transmission rate is relatively slow in the DAD-less scheme RD-MIPv6,an optimization scheme PCRD-MIPv6 has been proposed. The PCRD-MIPv6 combined handover predic-tion triggered by L2 and packets priority caching mechanism,the mobile node register to all the AR in access router cache list T AR by sending MOA address to them before the L2 handover completed,meanwhile,the packets are cached in the PAR according to the priority during the handover progress and send to the mobile node after the handover progress is finished in order to reduce the packet loss rate. The NS-2 simulation results show that the PCRD-MIPv6 scheme can effectively shorten the handover delay and reduce the rate of pack-ets loss.