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Design and Implementation of a Frequency Hopping Hybrid Multiple Access Protocol on FPGA

机译:FPGA跳频混合多址协议的设计与实现

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The frequency hopping ad hoc network system is the product of frequency hopping (FH) technology and ad hoc network technology. Because of its anti-interference, mobility and invulnerability, the frequency hopping ad hoc network is widely applied to military and civil communications systems. To make efficient use of the transmission channel, a frequency hopping hybrid multiple access (FHMA) protocol is proposed for frequency hopping ad hoc network. Each hop duration of the FH is divided into three parts. The first one is the transition period for frequency synthesis, and the following part is the time division multiple access (TDMA) period for reservation based multiple access, and the last part is the carrier sensing multiple access with collision avoidance (CSMA/CA) period for random access. Furthermore, an FPGA based implementation design is given for FHMA, where the transmitter module as well as the receiver module are designed with the finite state machine (FSM) method. Finally, the FHMA is implemented in Xilinx Vivado design suite to show the project is feasible and efficient. This protocol implementation is done in Verilog HDL language so that it can be easily transplanted. Behaviour simulation results verifies the correctness of the implementation.
机译:跳频ad hoc网络系统是跳频(FH)技术和临时网络技术的产品。由于其抗干扰,流动性和无懈可击性,跳频临时网络广泛应用于军事和民用通信系统。为了有效地利用传输信道,提出了跳频混合多次访问(FHMA)协议用于跳频ad hoc网络。 FH的每个跳跃持续时间分为三个部分。第一个是频率合成的过渡时段,并且以下部分是基于预留的多址的时分多址(TDMA)时段,最后部分是具有碰撞避免(CSMA / CA)时段的载波传感多次访问随机访问。此外,基于FPGA的实现设计是用于FHMA的,其中发射器模块以及接收器模块设计有有限状态机(FSM)方法。最后,FHMA在Xilinx Vivado设计套件中实施,以显示该项目是可行和有效的。该协议实现是在Verilog HDL语言中完成的,以便可以轻松移植。行为仿真结果验证了实施的正确性。

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