标题: 一全数位式红外线传收系统之设计与FPGA实现
Design and FPGA Implementation of an All-digital Infrared Wireless Transceiver System
作者: 林家弘
Jar-Hom Lin
郑木火
Mu-Huo Cheng
电控工程研究所
关键字: 红外线;锁相回路;锁相状态机;Infrared;Phase-locked loop;State machine;NRZ;FPGA
公开日期: 2002
摘要: 红外线无线传输为二电子装之间点对点的通讯技术。由于红外线元件价格便宜与构造简单,所以广泛应用在各类家电控制及资讯设备的资料传输。本论文设计一全数位式高速红外线传送系统,并以FPGA实现。在此设计中,如何解决传收系统之同步是一重要关键。
传统上,解决同步的问题,大都是利用锁相回路。然而,锁相回路需要有类比元件才能实现。所以我们提出锁相状态机的方法,在一个NRZ(Non Return to Zero)讯号周期内,将讯号同步。而且此方法能以简单的数位电路实现。我们使用型号FLEX10K100ARC240-1其振荡频率为32MHz的FPGA,成功地实现全数位式2Mbit/s红外线无线传输传收模组,在相距1.5公尺内,可正确传收讯号。
The infrared wireless transceiver is the point-to-point communication between electronic devices. It can be widely applied to control electric appliances and to carry information since the infrared element is inexpensive and simple. This thesis designs a high-speed all-digital infrared wireless transceiver system and presents a FPGA implementation. The key contribution of this thesis is to propose an all-digital phase-locked system to maintain the synchronization between the electronic appliances. In convention, this problem is solved by using the phase-locked loop, the realization of which offen needs analogy elements. We propose a phase-locked system designed by the concept of state machine. This system requires only digital elements for implementation and can obtain acquisition within the period of one transition of the NRZ signal. We use the FPGA, FLEX10K100ARC240-1, with the system clock of 32MHz to realize an 2Mbit/s infrared wireless transceiver module. Experiments show that the transeciver works correctly when the distance between devices within 1.5m.
URI: http://140.113.39.130/cdrfb3/record/nctu/#NT910591045
http://hdl.handle.net/11536/71026
显示于类别:Thesis