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Design of an FPGA based intelligence traffic light controller with VHDL

机译:具有VHDL的基于FPGA的智能交通信号灯控制器的设计

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Traffic lights, which may also be known as stoplights, traffic lamps, traffic signals, stop-and-go lights robots or semaphore are signaling devices positioned at road intersections, pedestrian crossings and other locations to control competing flows of traffic[1]. Traffic lights assign the right of way to road users by the use of lights in standard colors. Traffic light controller establishes a set of rules and instructions that drivers, pilots, train engineers, and ship captains rely on to avoid collisions and other hazards. Traffic control systems include signs, lights and other devices that communicate specific directions, warnings, or requirements. Traffic light controller (TLC) has been implemented using microcontroller, FPGA, and ASIC design. FPGA has many advantages over microcontroller, some of these advantages are; the speed, number of input/output ports and performance which are all very important in TLC design, at the same time ASIC design is more expensive than FPGA. Most of the TLCs implemented on FPGA are simple ones that have been implemented as examples of FSM(Finite State Machine). This paper concerned with an FPGA design implementation of a low cost 24-hour advanced traffic light controller system. The system has been successfully tested and implemented in hardware using Xilinx Spartan 3E and Virtex 5 FPGA. But the sensor and camera interfacing(which remains as future scope) is not done yet, manually the data corresponding to the sensors were given. The system has many advantages over the exciting TLC's on most of the parts of the world[2].
机译:交通信号灯,也称为交通信号灯,交通信号灯,交通信号灯,走走停停的机器人或信号灯,是位于交叉路口,人行横道和其他位置的信号装置,用于控制竞争的交通流量[1]。红绿灯通过使用标准颜色的信号灯为道路使用者分配通行权。交通信号灯控制器建立了一套规则和说明,驾驶员,飞行员,火车工程师和船长要避免碰撞和其他危险,必须依靠这些规则和说明。交通控制系统包括标志,信号灯和其他传达特定方向,警告或要求的设备。交通信号灯控制器(TLC)已使用微控制器,FPGA和ASIC设计实现。 FPGA比微控制器具有许多优势,其中一些优势是:速度,输入/输出端口数量和性能在TLC设计中非常重要,同时ASIC设计比FPGA昂贵。在FPGA上实现的大多数TLC是简单的,已作为FSM(有限状态机)的示例实现。本文涉及低成本24小时高级交通信号灯控制器系统的FPGA设计实现。该系统已使用Xilinx Spartan 3E和Virtex 5 FPGA在硬件上成功测试并实现。但是尚未完成传感器和摄像机的接口连接(仍作为将来的范围),手动给出了与传感器相对应的数据。与世界上大多数地区的令人兴奋的TLC相比,该系统具有许多优势[2]。

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