4.6 Article

Design of Dual-Mode Local Oscillators Using CMOS Technology for Motion Detection Sensors

Journal

SENSORS
Volume 18, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/s18041057

Keywords

CMOS; dual-mode; local oscillator (LO); FMCW radar; motion detection; sensor

Funding

  1. Nano UAV Intelligence Systems Research Laboratory at Kwangwoon University
  2. Defense Acquisition Program Administration (DAPA)
  3. Agency for Defense Development (ADD)
  4. National Research Foundation of Korea [22A20152213084] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Recently, studies have been actively carried out to implement motion detecting sensors by applying radar techniques. Doppler radar or frequency-modulated continuous wave (FMCW) radar are mainly used, but each type has drawbacks. In Doppler radar, no signal is detected when the movement is stopped. Also, FMCW radar cannot function when the detection object is near the sensor. Therefore, by implementing a single continuous wave (CW) radar for operating in dual-mode, the disadvantages in each mode can be compensated for. In this paper, a dual mode local oscillator (LO) is proposed that makes a CW radar operate as a Doppler or FMCW radar. To make the dual-mode LO, a method that controls the division ratio of the phase locked loop (PLL) is used. To support both radar mode easily, the proposed LO is implemented by adding a frequency sweep generator (FSG) block to a fractional-N PLL. The operation mode of the LO is determined by according to whether this block is operating or not. Since most radar sensors are used in conjunction with microcontroller units (MCUs), the proposed architecture is capable of dual-mode operation by changing only the input control code. In addition, all components such as VCO, LDO, and loop filter are integrated into the chip, so complexity and interface issues can be solved when implementing radar sensors. Thus, the proposed dual-mode LO is suitable as a radar sensor.

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