DocumentCode :
133740
Title :
Dual particle filter to identify headway distance of platooned vehicles
Author :
Suzuki, Hironori ; Nakatsuji, Takashi
Author_Institution :
Sch. of Eng., Nippon Inst. of Technol., Saitama, Japan
fYear :
2014
fDate :
3-7 Aug. 2014
Firstpage :
297
Lastpage :
302
Abstract :
This paper applies a particle filter (PF) and a dual particle filter (DPF) for estimating the headway distance of vehicles traveling in a longitudinal platoon. Assuming that prior knowledge on the model parameter is different from what is observed in a real car-following, PF attempts to estimate the headway by measuring the acceleration rate and velocity of probe cars installed in the platoon. In addition, DPF is proposed to improve the accuracy by estimating the headway as well as the model parameters simultaneously within a single process. Numerical analyses were carried out to evaluate the performance of PF and DPF in two scenarios with six-vehicle platoon and different installation of probe cars. It was found that PF and DPF perform very well if all traveling vehicles in the platoon measure the acceleration rate and velocity. However, the effect of dual filtering process in DPF is not very significant to improve the estimation accuracy because the model parameters are not corrected appropriately by the dual filtering process.
Keywords :
acceleration measurement; automobiles; distance measurement; particle filtering (numerical methods); velocity measurement; DPF; PF; acceleration rate measurement; car-following vehicle; dual particle filter; headway distance estimation; longitudinal platoon; platooned vehicles; probe cars; six-vehicle platoon; velocity measurement; Acceleration; Equations; Mathematical model; Noise measurement; Numerical analysis; Numerical models; Size measurement; dual particle filter; dynamic estimation; headway distance; particle filter; vehicle platoon;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
World Automation Congress (WAC), 2014
Conference_Location :
Waikoloa, HI
Type :
conf
DOI :
10.1109/WAC.2014.6935899
Filename :
6935899
Link To Document :
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