A 24 GHz wideband monostatic FMCW radar system based on a single-channel SiGe bipolar transceiver chip

作者:Bredendiek Christian*; Pohl Nils; Jaeschke Timo; Thomas Sven; Aufinger Klaus; Bilgic Attila
来源:International Journal of Microwave and Wireless Technologies, 2013, 5(3): 309-317.
DOI:10.1017/S1759078713000391

摘要

In this paper a monostatic frequency-modulated continuous-wave (FMCW) radar system around a center frequency of 24 GHz with a wide tuning range of 8 GHz (approximate to 33%) is presented. It is based on a fully integrated single-channel SiGe transceiver chip. The chip architecture consists of a fundamental VCO, a receive mixer, a divider chain, and coupling/matching networks. All circuits, except for the divider, are designed with the extensive use of on-chip monolithic integrated spiral inductors. The chip is fabricated in a SiGe bipolar production technology which offers an f(T) of 170 GHz and f(max) of 250 GHz. The phase noise at 1 MHz offset is better than -100 dBc/Hz over the full-tuning range of 8 GHz and a phase noise of better than -111 dBc/Hz is achieved at 27 GHz. The peak output power of the chip is -1 dBm while the receive mixer offers a 1 dBm input referred compression point to keep it from being saturated. The chip has a power consumption of 245 mW and uses an area of 1.51 mm(2). The FMCW radar system achieves a power consumption below 1.6 W. Owing to the high stability of the sensor, high accuracy mesaurements with a range error %26lt;+/-250 mu m were achieved. The standard deviation between repeated measurements of the same target is 0.6 mu m and the spatial resolution is 28 mm.

  • 出版日期2013-6

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