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Low-power DSSS transmitter and its VLSI implementation

机译:低功耗DSSS发送器及其VLSI实现

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An interesting area of application in wireless data communication is direct-sequence spread spectrum (DSSS). Spread spectrum communication techniques make the signals more robust against interference and jamming. These are based on a concept that narrowband signal is scrambled before transmission in such a way that the signals occupy a much larger part of the radio frequency spectrum. As the digital and the analogue system components are required on the same substrate in today's mixed-signal chips, the DSSS transmitter system is proposed to be implemented in field-programmable gate array (FPGA)-based platforms and application-specific integrated circuits (ASICs). With a low-power very large-scale integration (VLSI) architecture, sophisticated processing of wide-bandwidth DSSS systems can be exploited in FPGAs/ASICs. In this article, binary pseudo-noise (PN) sequences are generated using a low-power linear feedback shift register (LFSR) in order to spread transmit signals extensively. The proposed low-power design of LFSR and DSSS transmitter with implementation results is illustrated in this paper. Dynamic power dissipation of the proposed DSSS transmitter is reduced up to 15% and 15.6% when compared to the conventional LFSR and the Gold code-based systems respectively. The proposed hardware is implemented in 180-nm technology and operates at 15.36-MHz frequency.
机译:无线数据通信中的一个有趣的应用领域是直接序列扩频(DSS)。扩频通信技术使信号对干扰和干扰更加坚固。这些基于窄带信号在传输之前扰乱窄带信号的概念,使得信号占据射频频谱的更大部分的方式。当在当今的混合信号芯片中相同的基板上需要数字和模拟系统组件时,DSSS发射器系统被提出为在现场可编程门阵列(FPGA)的平台和专用集成电路(ASICS)中实现)。通过低功耗非常大的集成(VLSI)架构,可以在FPGA / ASIC中利用复杂的宽带DSSS系统处理。在本文中,使用低功率线性反馈移位寄存器(LFSR)生成二进制伪噪声(PN)序列以广泛地扩展发射信号。本文说明了LFSR和DSSSSS的LFSR和DSSS的低功耗设计。与传统的LFSR和基于金代码的系统相比,所提出的DSSS发射器的动态功耗降低高达15%和15.6%。所提出的硬件以180纳米技术实现,并以15.36-MHz频率运行。

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