传输层包含这样的类:它们实际实现了将消息传送到移动设备的协议。
The Transport Layer contains classes that are the actual implementation of protocols that carry messages to the mobile device.
任何可以传送SOAP消息的传输,例如HTTP 1.1,都有一个定义好的用于SOAP 1.1的协议绑定。
Any transport that can deliver SOAP messages, such as HTTP 1.1, which has a defined protocol binding for SOAP 1.1.
WS-RM规范定义了一个线上 (on-the-wire)协议,旨在解决试图通过 HTTP 之类的连接传送SOAP消息时遇到的两个问题
The WS-RM specification defines an on-the-wire protocol that aims to solve two problems encountered when trying to deliver SOAP messages over, for example, a HTTP connection
这样就可以通过适合应用程序的传输协议来传送消息。
Thus, a message can be transmitted via the transport protocol that suits the application.
然后存根将调用参数打包成一个请求消息并调用传输协议将该消息传送到服务器。
The stub packs the call parameters into a request message, and invokes a transport protocol to ship the message to the server.
虽然SOAP最初在设计上仅与HTTP一起使用,但任何传输协议或消息传递中间件都可用来传送soap消息。
Although SOAP was originally designed to work only with HTTP, any transport protocol or messaging middleware can be used to carry a SOAP message.
在服务器端,传输协议将消息传送给服务器存根,随后服务器存根解包请求消息并调用对象中真正的函数。
At the server side, the transport protocol delivers the message to the server stub, which then unpacks the request message and calls the actual function on the object.
基础协议—提供主消息传送接口,提供收发消息和管理远程服务器上的文件夹的能力。
Basic protocol - Provides the main messaging interface, and the ability to send and receive messages and to manage the folders on a remote server.
SOAP消息通常都是通过HTTP 协议传送的,不过也可以通过其他方式传送(例如JMS或e-mail)。
SOAP messages are typically conveyed over HTTP transport, although other transports (such as JMS or e-mail) are equally viable.
SS7协议的下半部分由消息传送部分(MTP)组成。
The bottom half of the SS7 protocol consists of the Message Transfer Part (MTP).
需要传送大量小消息的并行程序还应采用用户级通信协议。
Those that send a great number of small messages should adopt user-level network interface protocols additionally to reduce overhead.
分析表明,HBSIP协议在分层结构下进行切换尤其是域内切换时,表现出了良好的切换性能,同时,也避免了终端在域内移动时控制消息和数据流传送的域外扩散。
It is shown that HBSIP behaves a good switching performance, and also avoids control information and data stream spreading out of the domain when the mobile terminal is moving cross in the domain.
分析表明,HBSIP协议在分层结构下进行切换尤其是域内切换时,表现出了良好的切换性能,同时,也避免了终端在域内移动时控制消息和数据流传送的域外扩散。
It is shown that HBSIP behaves a good switching performance, and also avoids control information and data stream spreading out of the domain when the mobile terminal is moving cross in the domain.
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