An improved MFSK waveform for low-cost automotive radar

Author(s):  
Junjie He ◽  
Renli Zhang ◽  
Weixing Sheng ◽  
Yubing Han ◽  
Xiaofeng Ma
Keyword(s):  
Low Cost ◽  
2003 ◽  
Vol 1 ◽  
pp. 197-200
Author(s):  
M. R. Kühn ◽  
E. M. Biebl

Abstract. An increasing number of applications is proposed for the 24 GHz ISM-band, like automotive radar systems and short-range communication links. These applications demand for oscillators providing moderate output power of a few mW and moderate frequency stability of about 0.5%. The maximum oscillation frequency of low-cost off-theshelf transistors is too low for stable operation of a fundamental 24GHz oscillator. Thus, we designed a 24 GHz first harmonic oscillator, where the power generated at the fundamental frequency (12 GHz) is reflected resulting in effective generation of output power at the first harmonic. We measured a radiated power from an integrated planar antenna of more than 1mW. Though this oscillator provides superior frequency stability compared to fundamental oscillators, for some applications additional stabilization is required. As a low-cost measure, injection locking can be used to phase lock oscillators that provide sufficient stability in free running mode. Due to our harmonic oscillator concept injection locking has to be achieved at the first harmonic, since only the antenna is accessible for signal injection. We designed, fabricated and characterized a harmonic oscillator using the antenna as a port for injection locking. The locking range was measured versus various parameters. In addition, phase-noise improvement was investigated. A theoretical approach for the mechanism of first harmonic injection locking is presented.


Author(s):  
Cheng-Yu Ho ◽  
Sheng-Chi Hsieh ◽  
Ming-Fong Jhong ◽  
Hung-Chun Kuo ◽  
Chun-Yen Ting ◽  
...  

Author(s):  
L. Moquillon ◽  
P. Garcia ◽  
S. Pruvost ◽  
S. Le Tual ◽  
M. Marchetti ◽  
...  

Author(s):  
Cheonsoo Kim ◽  
Piljae Park ◽  
Dong-Young Kim ◽  
Seong-Do Kim ◽  
Hyun-Kyu Yu ◽  
...  

Author(s):  
J. Böck ◽  
M. Wojnowski ◽  
C. Wagner ◽  
H. Knapp ◽  
W. Hartner ◽  
...  

Embedded wafer-level ball grid array (eWLB) is investigated as a low-cost plastic package for automotive radar applications in the 76–81 GHz range. Low transmission losses from chip to package and board are achieved by appropriate circuit and package design. Special measures are taken to effectively remove the heat from the package and to optimize the package process to achieve automotive quality targets. A 77 GHz radar chip set in eWLB package is developed, which can be applied on the system board using standard solder reflow assembly. These radar MMICs provide excellent radio frequency (RF) performance for the next generation automotive radar sensors. The potential for even higher system integration is shown by a radar transceiver with antennas integrated in the eWLB package. These results demonstrate that eWLB technology is an attractive candidate to realize low-cost radar systems and to enable radar safety affordable for everyone in the near future.


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