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<DIV class=im0><IMG height=64 src="001_22.files/left.jpg" width=564
border=0></DIV><!-- text starts here --><SPAN class=ps0><NOBR><SPAN
class=ft0>1.3 H.323<SPAN class=em0>-</SPAN>VoIP<SPAN
class=em0>电话技术的</SPAN>ITU-T<SPAN class=em0>方法简介</SPAN></SPAN></NOBR></SPAN>
<SPAN class=ps1><NOBR><SPAN class=ft1>ITU-T<SPAN class=em1>推荐使用</SPAN>H.323<SPAN
class=em1>,</SPAN><SPAN
class=em1>它是最早的实现局域网基于包交换的多媒体会议的保护规范。它</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps2><NOBR>不能保证服务质量。尽管从基于<SPAN
class=em2>IP</SPAN>的呼叫处理的早期开始,利用其他方法和协议已经开始了</NOBR></SPAN> <SPAN
class=ps3><NOBR>很多实验工作,但是在企业界早就开始采用<SPAN
class=em2>H.323</SPAN>规范并且规模不断扩大。后来,<SPAN
class=em2>Internet</SPAN>被</NOBR></SPAN> <SPAN class=ps4><NOBR>用来测试<SPAN
class=em2>IP</SPAN>电话技术在最坏情况下,就是在完全不受控制的基于包交换的传输环境中的可行</NOBR></SPAN> <SPAN
class=ps5><NOBR>性。现在<SPAN class=em2>H.323</SPAN>是基于<SPAN
class=em2>IP</SPAN>电话技术在一般包网络上的工作良好的版本。<SPAN
class=em2>H.323</SPAN>文档指定了一些</NOBR></SPAN> <SPAN
class=ps6><NOBR>协议、方法和网络元件,在两各端点(用户)之间建立点对点多媒体连接以及和三方或更多</NOBR></SPAN> <SPAN
class=ps7><NOBR>方建立多点和连接的多媒体会议要用到它们。点对点、两方之间的语音会议已经退化成普通</NOBR></SPAN> <SPAN
class=ps8><NOBR>的旧式电话呼叫,在本节中将对它进行详细讨论。</NOBR></SPAN> <SPAN class=ps9><NOBR><SPAN
class=ft1>H.323<SPAN class=em1>拓扑的基本网络元件有终端、关守(<SPAN
class=em2>GateKeeper</SPAN>,<SPAN
class=em2>GK</SPAN>)</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps10><NOBR>、组播单元(<SPAN class=em2>MultiCast Unit</SPAN>,</NOBR></SPAN>
<SPAN class=ps11><NOBR><SPAN class=ft1>MCU<SPAN class=em1>)</SPAN><SPAN
class=em1>和网关(<SPAN class=em2>GateWay</SPAN>,<SPAN
class=em2>GW</SPAN>)</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps12><NOBR>。这里把<SPAN class=em2>MCU</SPAN>单独列了出来,而实际上,它们经常是<SPAN
class=em2>GK<SPAN class=em1>,</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps13><NOBR>或者作为终端为一个或多个用户提供服务的高级计算机的一部分。在三种元件之间存在逻辑</NOBR></SPAN> <SPAN
class=ps14><NOBR>连接,用来实现呼叫建立和呼叫中止,同时获得描述基础网络结构的操作质量的性能参数。</NOBR></SPAN> <SPAN
class=ps15><NOBR><SPAN class=ft1>H.323<SPAN class=em1>已经被扩展为支持通过</SPAN>PSTN<SPAN
class=em1>跨越网段进行高效呼叫处理,或者支持一般的</SPAN>IP<SPAN
class=em1>包网络拓</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps16><NOBR>扑。在本节中,将讨论<SPAN
class=em2>H.323</SPAN>的优点和缺点,并和其他与之竞争的信令协议进行比较和展望。</NOBR></SPAN> <SPAN
class=ps17><NOBR><SPAN class=ft1>H.323<SPAN class=em1>是可行的基于</SPAN>IP<SPAN
class=em1>的包电话的三个主要竞争者之一。虽然</SPAN>H.323<SPAN
class=em1>并未获得压倒性的胜利,</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps18><NOBR>但是它的性能使得它非常有竞争力,至少对于企业界和受控的<SPAN
class=em2>LAN</SPAN>环境中的呼叫处理是这样。</NOBR></SPAN> <SPAN class=ps19><NOBR><SPAN
class=ft1>H.323<SPAN
class=em1>标准定义了用来向关守进行用户(终端)注册、呼叫控制以及在希望进入多媒体会</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps20><NOBR>议的两方或多方之间进行的逻辑信道容量协商的过程。建议<SPAN
class=em2>H.225.0</SPAN>中定义了注册、认证和状</NOBR></SPAN> <SPAN
class=ps21><NOBR>态以及呼叫控制,而建议<SPAN
class=em2>H.245</SPAN>中定义了逻辑信道容量协商(介质控制)。图<SPAN class=em2>1-11</SPAN>中是<SPAN
class=em2>H.323</SPAN>的</NOBR></SPAN> <SPAN
class=ps22><NOBR>协议栈。我们尽可能用形象的解释来讨论在简单呼叫流中呼叫建立、介质类型和格式协商的</NOBR></SPAN> <SPAN
class=ps23><NOBR>规范。</NOBR></SPAN> <SPAN class=ps24><NOBR>这里关于<SPAN
class=em2>H.323</SPAN>标准的讨论并不是为了取代<SPAN
class=em2>ITU</SPAN>规范,但是希望通过这些描述,读者可以</NOBR></SPAN> <SPAN
class=ps25><NOBR>把这一标准的讲授和实际实现过程中的问题联系起来。不管是在相同的拓扑内,还是在支持</NOBR></SPAN> <SPAN
class=ps26><NOBR>多信令标准的混合域内,都希望读者能够熟悉基于<SPAN
class=em2>IP</SPAN>的电话技术的主要因素。</NOBR></SPAN> <SPAN class=ps27><NOBR><SPAN
class=ft1>1. <SPAN class=em4>定义和参考</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps28><NOBR><SPAN class=ft1>H.323<SPAN
class=em1>终端是一个包含信令端点的设备,该端点用来支持一个或多个用户与一方或多方进</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps29><NOBR>行实时通信。在同构<SPAN class=em2>H.323</SPAN>环境中,其他方可以是<SPAN
class=em2>H.323</SPAN>的用户,但是通常情况下,一个呼叫</NOBR></SPAN> <SPAN
class=ps30><NOBR>中的一方或多方可能处在不同的域,如<SPAN class=em2>PSTN</SPAN>电话用户、<SPAN
class=em2>SIP</SPAN>或<SPAN class=em2>MGCP</SPAN>端点。一个完整的<SPAN
class=em2>H.323</SPAN></NOBR></SPAN> <SPAN
class=ps31><NOBR>呼叫模型在两个终端、一个终端和关守或者一个终端和网关之间执行。</NOBR></SPAN> <SPAN
class=ps32><NOBR>关守是<SPAN class=em2>H.323</SPAN>区域的控制中心。<SPAN
class=em2>H.323</SPAN>区域包括一个关守控制的所有终端网关和多点传送</NOBR></SPAN> <SPAN
class=ps33><NOBR>单元(<SPAN class=em2>MultiCast Unit</SPAN>,<SPAN
class=em2>MCU</SPAN>)。每个区域中只有一个关守。区域是设备的逻辑组合,它所包</NOBR></SPAN> <SPAN
class=ps34><NOBR>含的一些元件成为与交换机和路由器相连的分散拓扑的一部分。也就是说,一个区域可以占</NOBR></SPAN> <SPAN
class=ps35><NOBR>据很广的地理范围,图<SPAN class=em2>1-9</SPAN>中是<SPAN
class=em2>H.323</SPAN>区域的一般情况的扩展。</NOBR></SPAN> <SPAN class=ps36><NOBR>图<SPAN
class=em2>1-9</SPAN>中显示了两个<SPAN
class=em2>LAN</SPAN>网段中的关守和网络元件之间的连接。注意,交换机和路由器对</NOBR></SPAN> <SPAN
class=ps37><NOBR>于<SPAN
class=em2>H.323</SPAN>网络元件是透明的,也就是说,网络元件看不见这些交换机和路由器,也不把它们作</NOBR></SPAN> <SPAN
class=ps38><NOBR>为呼叫处理和信令管理功能的一部分来处理。在一个区域中也可以有多个<SPAN class=em2>MCU<SPAN
class=em1>,</SPAN></SPAN>使用它们是</NOBR></SPAN> <SPAN class=ps39><NOBR><SPAN
class=ft1>GK<SPAN class=em1>的功能之一。在扩展区域的情况下,我们看到,<SPAN class=em2>H.323
GK</SPAN>通过交换和路由设备访问住宅网</SPAN></SPAN></NOBR></SPAN> <SPAN
class=ps40><NOBR>关或网络集线器。可能存在这种情况,即一个电话服务供应商使用<SPAN
class=em2>H.323</SPAN>为远程地理分布式的</NOBR></SPAN> <SPAN class=ps41><NOBR><SPAN
class=ft3>22 <SPAN class=em3>IP </SPAN><SPAN
class=em5>电话技术:稳定的</SPAN><SPAN class=em3>VoIP</SPAN><SPAN
class=em5>服务集成</SPAN></SPAN></NOBR></SPAN> <SPAN class=ps42><NOBR><SPAN
class=ft4>文档</SPAN></NOBR></SPAN> </BODY></HTML>
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