The evolution of the mobile landscape is coupled with the ubiquitous nature of the Internet with its intermittent wireless connectivity and the web services. Achieving the web service reliability results in low communication overhead and retrieving the appropriate response. The Middleware Approach (MA) is highly tended to achieve the web service reliability. This paper proposes a Reliable Service Architecture using Middleware (RSAM) that achieves the reliable web services consumption. The enhanced architecture focuses on ensuring and tracking the request execution under the communication limitations and service temporal unavailability. It considers the most measurement factors including: request size, response size, and consuming time. We conducted experiments to compare the enhanced architecture with the traditional one that has no additional overhead. In these experiments, we covered several cases to prove the achievement of reliability. Results also show that the request size was found to be constant, the response size is identical to the traditional architecture, and the increase in the consuming time was less than 5% of the transaction time with the different response sizes.
翻译:移动景观的演变与互联网的无间断无线连接和网络服务无处不在的性质相结合。 实现网络服务的可靠性导致通信管理费用低,并获取适当的响应。 中件方法(MA)极倾向于实现网络服务的可靠性。 本文建议使用Middleward(RSAM)建立一个可靠的服务架构, 实现可靠的网络服务消费。 强化架构的重点是确保和跟踪在通信限制和服务时间不可用的情况下执行请求的情况。 它考虑了大多数衡量因素, 包括: 请求大小、 响应大小和消耗时间。 我们进行了实验, 将强化的架构与没有额外管理的传统架构进行比较。 在这些实验中, 我们研究了几个案例以证明可靠性的实现。 结果还显示, 请求规模被认为保持不变, 响应规模与传统架构相同, 消费时间的增加不到交易时间的5%, 与不同的响应规模相比。