A DMVOCC-MVDA (distributed multiversion optimistic concurrency control with multiversion dynamic adjustment) protocol was presented to process mobile distributed real-time transaction in mobile broadcast environment...A DMVOCC-MVDA (distributed multiversion optimistic concurrency control with multiversion dynamic adjustment) protocol was presented to process mobile distributed real-time transaction in mobile broadcast environments. At the mobile hosts, all transactions perform local pre-validation. The local pre-validation process is carried out against the committed transactions at the server in the last broadcast cycle. Transactions that survive in local pre-validation must be submitted to the server for local final validation. The new protocol eliminates conflicts between mobile read-only and mobile update transactions, and resolves data conflicts flexibly by using multiversion dynamic adjustment of serialization order to avoid unnecessary restarts of transactions. Mobile read-only transactions can be committed with no-blocking, and respond time of mobile read-only transactions is greatly shortened. The tolerance of mobile transactions of disconnections from the broadcast channel is increased. In global validation mobile distributed transactions have to do check to ensure distributed serializability in all participants. The simulation results show that the new concurrency control protocol proposed offers better performance than other protocols in terms of miss rate, restart rate, commit rate. Under high work load (think time is ls) the miss rate of DMVOCC-MVDA is only 14.6%, is significantly lower than that of other protocols. The restart rate of DMVOCC-MVDA is only 32.3%, showing that DMVOCC-MVDA can effectively reduce the restart rate of mobile transactions. And the commit rate of DMVOCC-MVDA is up to 61.2%, which is obviously higher than that of other protocols.展开更多
在移动分布式数据库系统中采用三层结构,提出了DMVOCC-DA-2PLV(Distributed Multiversion Opti mis-tic Concurrency Control-Dynamic Adjust ment of Serialization Order-Two-Phase Local Validation)协议处理移动分布式实时事务。移...在移动分布式数据库系统中采用三层结构,提出了DMVOCC-DA-2PLV(Distributed Multiversion Opti mis-tic Concurrency Control-Dynamic Adjust ment of Serialization Order-Two-Phase Local Validation)协议处理移动分布式实时事务。移动实时事务处理分两阶段进行。第一阶段在移动主机(MHs)上处理,并进行局部部分有效性检查性确认,使用向后有效性确认机制,与在服务器提交事务进行有效性确认。及早地检测数据冲突,节省了处理和通信资源。第二阶段在服务器处理,通过局部部分有效性确认的事务,提交到服务器进行局部最终有效性确认。协议消除了移动只读事务和移动更新事务的冲突,使用多版本动态调整串行次序技术,避免了不必要的事务重启动。如果移动只读事务所有读数据项通过局部部分向后有效性确认,则可提交,大大降低了移动只读事务的响应时间。在全局有效性确认中对分布更新事务进行检查,以保证分布串行性。通过模拟仿真,对DMVOCC-DA-2PV协议进行了性能测试,并与DTO-2PC和DHP-2PL进行了比较。实验结果表明DMVOCC-DA-2PV并发控制协议要优于其它协议。展开更多
提出了移动广播环境中MVOCC-DA-2PV(Multiversion Optimistic Concurrency Control with Dynamic Adjustment of serialization order using Two-Phase Validation)并发控制协议。移动实时事务处理分两阶段进行。第一阶段在移动主机(Mob...提出了移动广播环境中MVOCC-DA-2PV(Multiversion Optimistic Concurrency Control with Dynamic Adjustment of serialization order using Two-Phase Validation)并发控制协议。移动实时事务处理分两阶段进行。第一阶段在移动主机(MobileHosts,MHs)上处理,第二阶段在服务器上处理。移动主机(MHs)上所有移动事务执行部分向后有效性确认,与在服务器提交事务进行有效性确认。如果移动事务通过MH上部分有效性确认,提交到服务器进行最终有效性确认。如此早地检测数据冲突,节省了处理和通信资源。协议消除了移动只读事务和移动更新事务的冲突,使用多版本动态调整串行次序技术,避免了不必要的事务重启动。降低了移动只读事务的响应时间。通过模拟仿真,对MVOCC-DA-2PV协议进行了性能测试,并与PVTO和HP2PL进行了比较。实验结果表明MVOCC-DA-2PV并发控制协议要优于其它协议。展开更多
基金Project(20030533011)supported by the National Research Foundation for the Doctoral Program of Higher Education of China
文摘A DMVOCC-MVDA (distributed multiversion optimistic concurrency control with multiversion dynamic adjustment) protocol was presented to process mobile distributed real-time transaction in mobile broadcast environments. At the mobile hosts, all transactions perform local pre-validation. The local pre-validation process is carried out against the committed transactions at the server in the last broadcast cycle. Transactions that survive in local pre-validation must be submitted to the server for local final validation. The new protocol eliminates conflicts between mobile read-only and mobile update transactions, and resolves data conflicts flexibly by using multiversion dynamic adjustment of serialization order to avoid unnecessary restarts of transactions. Mobile read-only transactions can be committed with no-blocking, and respond time of mobile read-only transactions is greatly shortened. The tolerance of mobile transactions of disconnections from the broadcast channel is increased. In global validation mobile distributed transactions have to do check to ensure distributed serializability in all participants. The simulation results show that the new concurrency control protocol proposed offers better performance than other protocols in terms of miss rate, restart rate, commit rate. Under high work load (think time is ls) the miss rate of DMVOCC-MVDA is only 14.6%, is significantly lower than that of other protocols. The restart rate of DMVOCC-MVDA is only 32.3%, showing that DMVOCC-MVDA can effectively reduce the restart rate of mobile transactions. And the commit rate of DMVOCC-MVDA is up to 61.2%, which is obviously higher than that of other protocols.
文摘在移动分布式数据库系统中采用三层结构,提出了DMVOCC-DA-2PLV(Distributed Multiversion Opti mis-tic Concurrency Control-Dynamic Adjust ment of Serialization Order-Two-Phase Local Validation)协议处理移动分布式实时事务。移动实时事务处理分两阶段进行。第一阶段在移动主机(MHs)上处理,并进行局部部分有效性检查性确认,使用向后有效性确认机制,与在服务器提交事务进行有效性确认。及早地检测数据冲突,节省了处理和通信资源。第二阶段在服务器处理,通过局部部分有效性确认的事务,提交到服务器进行局部最终有效性确认。协议消除了移动只读事务和移动更新事务的冲突,使用多版本动态调整串行次序技术,避免了不必要的事务重启动。如果移动只读事务所有读数据项通过局部部分向后有效性确认,则可提交,大大降低了移动只读事务的响应时间。在全局有效性确认中对分布更新事务进行检查,以保证分布串行性。通过模拟仿真,对DMVOCC-DA-2PV协议进行了性能测试,并与DTO-2PC和DHP-2PL进行了比较。实验结果表明DMVOCC-DA-2PV并发控制协议要优于其它协议。
基金国家教育部博士点基金资助(the Specialied Key Research Fundfor Doctoral Program of the Ministry of EducationChina under grant No.20030533011)。
文摘提出了移动广播环境中MVOCC-DA-2PV(Multiversion Optimistic Concurrency Control with Dynamic Adjustment of serialization order using Two-Phase Validation)并发控制协议。移动实时事务处理分两阶段进行。第一阶段在移动主机(MobileHosts,MHs)上处理,第二阶段在服务器上处理。移动主机(MHs)上所有移动事务执行部分向后有效性确认,与在服务器提交事务进行有效性确认。如果移动事务通过MH上部分有效性确认,提交到服务器进行最终有效性确认。如此早地检测数据冲突,节省了处理和通信资源。协议消除了移动只读事务和移动更新事务的冲突,使用多版本动态调整串行次序技术,避免了不必要的事务重启动。降低了移动只读事务的响应时间。通过模拟仿真,对MVOCC-DA-2PV协议进行了性能测试,并与PVTO和HP2PL进行了比较。实验结果表明MVOCC-DA-2PV并发控制协议要优于其它协议。