标题: | IEEE 802.11介质存取控制器设计与实现:传输部分 Design and Implementation of IEEE 802.11 MAC Controller:Transmitter Part |
作者: | 林富雄 Fu-Shung Lin 陈伯宁 李程辉 Dr. Po-Ning Chen Dr. Tsern-Huei Lee 电信工程研究所 |
关键字: | 无线区域网路;介质存取控制;载波感测多重撷取及冲撞避免;Wireless LAN;MAC;CSMA/CA |
公开日期: | 1998 |
摘要: | 随着最近无线通讯技术的进步,能同时支援语音与数据服务的无线传输已经是下一代通讯网路的趋势。无线传输不会被环境所限制,经由简单的(无需布线的)网路拓朴就可以提供等效于有线网路的服务。可以预期的是, 未来的无线网路,将会着重移动性的网路存取支援,以及即时互动服务。 在无线区域网路的相关标准中,IEEE 802.11规格[3] [4]可以说是第一个制定较完整的无线局部数据传输标准。它不仅提供了必备的竞争式数据传输服务,也制定了可选择性支援的延迟限制服务(Time-Bounded Service)。IEEE 802.11在1997制订完成后,数百种相关产品即很快地出现在市场上。在这些产品中, IEEE 802.11介质存取控制器大部分都是采用中央处理器为基础(或是韧体实作为基础)的架构设计,例如AMD公司所制造的“以80188为基础”的79C30晶片。然而,我们注意到以韧体来实现介质存取控制,实际上对区域网路所需之低成本及高传输速度要求,并不是符合经济效益的的设计方法。同时,我们也观察到IEEE 802.11已经制定完成的介质存取控制规范,于接下来的版本并未有任何修订。所以,韧体实现架构的易随标准修订而修改之弹性化的好处,变成已不是主要的IEEE 802.11介质存取控制器的设计考量。因此,我们认为必须思考一个新的实现架构。 在本论文中,我们提出以专门设计的标准单元式积体电路来实现IEEE 802.11介质存取机制(CSMA/CA)。针对“控制传输框架”需要快速回应的需求,一个“控制传输框架处理模组”也包含在我们设计的介质存取控制器内。我们的设计---如果与中央处理器为基础的设计架构作比较---和主系统及基频处理器的介面就显的相当简单。除此之外,我们的设计也能够很直接的适用于未来IEEE 802.11 5/11Mbps高速的版本上[4] [12]。 With the recent advance of the wireless technologies, wireless transmission is becoming the trend of the next generation communication for voice and data services. It can provide wired-network equivalent services through simple network topology and without being restricted by the environmental space. As anticipated, the future wireless network will focus more on supporting the mobility access, as well as the interactive services. IEEE 802.11 [3] [4] is perhaps the first well-rounded standard on wireless LAN. It not only specifies the basic contention-based data transmission services, but also optionally supports the time-bounded services. After the standardization of IEEE 802.11 in 1997, hundreds of compliant products quickly fill in the market. The current implementations of the IEEE 802.11 Medium Access Control (MAC) are mostly based on a CPU-Based or firmware-based architecture, such as the 80188-based 79C30 chip manufactured by AMD Inc. We, however, notice that the firmware-based implementation is actually not a cost-effect solution for a low-cost and high-speed LAN product. We also observe that the IEEE 802.11 MAC scheme is already finalized (and expects to remain intact in the coming revision). Therefore, the flexibility of a firmware-based implementation somewhat loses its ground. Accordingly, a new implementation architecture should be considered. In this thesis, we propose a specially cell-based IC design to implement the IEEE 802.11 basic medium access mechanism (CSMA/CA). To quickly respond to the control frames, an internal Control Frame Handler is also included in our MAC controller. In our design (if compared with the CPU-based architecture), the interface to the host system, as well as the interface to the Baseband processor, is quite simple. In addition, our design can easily migrate to the coming 5.5/11 Mbps high-speed version of IEEE 802.11 standard [4] [12]. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT870435053 http://hdl.handle.net/11536/64513 |
显示于类别: | Thesis |