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Erschienen in: Intelligent Service Robotics 1/2019

24.09.2018 | Original Research Paper

Range-based relative localization using a fixed number of measurements

verfasst von: Lin Zhang, Li Yu

Erschienen in: Intelligent Service Robotics | Ausgabe 1/2019

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Abstract

Storms block the global positioning system and reduce visibility. The key to success in rescuing a wrecked robot is to find it first; however, in hostile territory, broadcasting distress signals is not an option. In this paper, we design an iterative algorithm for a rescue robot that identifies the relative pose of a wrecked robot using five range measurements and communications at different time points. Just as architects build real frameworks to hold up a building, we use the above information as building blocks to construct a hypothetical geometric framework, which consists of vertices bounded by straight, stiff edges. Then, the relative pose can be calculated from the coordinates of vertices in the framework. Theoretical analysis shows that measuring and communicating four or more times can form only one framework; thus, this framework provides one relative pose. Therefore, we use only one more measurement than the theoretical lower bound. To restrain noise, we suppress the fact that there are many possible frameworks. The algorithm finds a framework whose edge lengths are close to the expectations of the edge lengths of these frameworks. The algorithm is guaranteed to give an error-bounded estimate with an adjustable possibility rather than gradually stabilizing estimates or numerous possible estimates. The entire positioning scheme contains no matrix operations and does not require a polynomial toolbox. Additionally, this approach requires no prior information of the relative pose, no coordinated motion of the two robots, and no parameter must be adjusted through experience. In summary, a robot in distress can be located if five range measurements and communications can be performed between the two robots.

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Literatur
1.
Zurück zum Zitat Gilmour JH, Godleski JS, Carter RL et al (1992) Aircraft rendezvous using low data rate two-way TACAN bearing information. U.S. Patent 5,128,873 Gilmour JH, Godleski JS, Carter RL et al (1992) Aircraft rendezvous using low data rate two-way TACAN bearing information. U.S. Patent 5,128,873
2.
Zurück zum Zitat Uttam BJ, Amos DH, Covino JM et al (2007) Terrestrial radio-navigation systems. Kayton M, Fried WR Avionics navigation systems, 2nd edn. Wiley: Hoboken, pp 99–177 Uttam BJ, Amos DH, Covino JM et al (2007) Terrestrial radio-navigation systems. Kayton M, Fried WR Avionics navigation systems, 2nd edn. Wiley: Hoboken, pp 99–177
3.
Zurück zum Zitat Freitag L, Grund M, Singh S et al (2005) The WHOI micro-modem: An acoustic communications and navigation system for multiple platforms. In: Proceedings of OCEANS MTS/IEEE, Vol. 2, pp 1086–1092 Freitag L, Grund M, Singh S et al (2005) The WHOI micro-modem: An acoustic communications and navigation system for multiple platforms. In: Proceedings of OCEANS MTS/IEEE, Vol. 2, pp 1086–1092
6.
Zurück zum Zitat Martinelli A, Siegwart R (2005) Observability analysis for mobile robot localization. In: Proceedings of IEEE/RSJ international conference on intelligent robots and systems, pp 1471–1476 Martinelli A, Siegwart R (2005) Observability analysis for mobile robot localization. In: Proceedings of IEEE/RSJ international conference on intelligent robots and systems, pp 1471–1476
7.
Zurück zum Zitat Nilsson JO, Handel P (2013) Recursive bayesian initialization of localization based on ranging and dead reckoning. In: Proceedings of IEEE/RSJ international conference on intelligent robots and systems, pp 1399–1404 Nilsson JO, Handel P (2013) Recursive bayesian initialization of localization based on ranging and dead reckoning. In: Proceedings of IEEE/RSJ international conference on intelligent robots and systems, pp 1399–1404
8.
Zurück zum Zitat Strader J, Gu Y, Gross JN et al (2016) Cooperative relative localization for moving UAVs with single link range measurements. In: Proceedings of IEEE/ION position, location and navigation symposium, pp 336–343 Strader J, Gu Y, Gross JN et al (2016) Cooperative relative localization for moving UAVs with single link range measurements. In: Proceedings of IEEE/ION position, location and navigation symposium, pp 336–343
9.
Zurück zum Zitat Trawny N, Roumeliotis SI (2010) On the global optimum of planar, range-based robot-to-robot relative pose estimation. In: IEEE international conference on robotics and automation, pp 3200–3206 Trawny N, Roumeliotis SI (2010) On the global optimum of planar, range-based robot-to-robot relative pose estimation. In: IEEE international conference on robotics and automation, pp 3200–3206
12.
Zurück zum Zitat Evensen G (2009) Data assimilation: the ensemble Kalman filter, 2nd edn. Springer, BergenCrossRefMATH Evensen G (2009) Data assimilation: the ensemble Kalman filter, 2nd edn. Springer, BergenCrossRefMATH
15.
Zurück zum Zitat Dulmage J, Cioffi R, Fitz MP et al (2010) Characterization of distance error with received signal strength ranging. In: Proceedings of IEEE wireless communications and networking conference, pp 1–6 Dulmage J, Cioffi R, Fitz MP et al (2010) Characterization of distance error with received signal strength ranging. In: Proceedings of IEEE wireless communications and networking conference, pp 1–6
18.
Zurück zum Zitat Jackson B, Jordán T, Szabadka Z (2014) Globally linked pairs of vertices in rigid frameworks. Robert C. Asia IW and Walter W Rigidity and symmetry. Springer, New York, pp 177–203 Jackson B, Jordán T, Szabadka Z (2014) Globally linked pairs of vertices in rigid frameworks. Robert C. Asia IW and Walter W Rigidity and symmetry. Springer, New York, pp 177–203
19.
Zurück zum Zitat Gluck H (1975) Almost all simply connected closed surfaces are rigid. In: Proceedings of geometric topology conference, pp 225–239 Gluck H (1975) Almost all simply connected closed surfaces are rigid. In: Proceedings of geometric topology conference, pp 225–239
20.
Zurück zum Zitat Alfakih AY (2014) Local, dimensional and universal rigidities: a unified gram matrix approach. Robert C. Asia IW and Walter W Rigidity and symmetry. Springer, New York, pp 41–60 Alfakih AY (2014) Local, dimensional and universal rigidities: a unified gram matrix approach. Robert C. Asia IW and Walter W Rigidity and symmetry. Springer, New York, pp 41–60
25.
Zurück zum Zitat Diao Y, Hu G, Marelli D et al (2014) Cooperative localization of a cascading quadrilateral network. In: Proceedings of 11th IEEE international conference on control & automation (ICCA), pp 13–18 Diao Y, Hu G, Marelli D et al (2014) Cooperative localization of a cascading quadrilateral network. In: Proceedings of 11th IEEE international conference on control & automation (ICCA), pp 13–18
26.
Zurück zum Zitat Eren T, Goldenberg DK, Whiteley W et al (2004) Rigidity, computation, and randomization in network localization. In: Proceedings of twenty-third annual joint conference of the IEEE computer and communications societies, pp 2673–2684 Eren T, Goldenberg DK, Whiteley W et al (2004) Rigidity, computation, and randomization in network localization. In: Proceedings of twenty-third annual joint conference of the IEEE computer and communications societies, pp 2673–2684
28.
Zurück zum Zitat Strydom R, Thurrowgood S, Srinivasan MV (2014) Visual odometry: autonomous UAV navigation using optic flow and stereo. In: Proceedings of Australasian conference on robotics & automation Strydom R, Thurrowgood S, Srinivasan MV (2014) Visual odometry: autonomous UAV navigation using optic flow and stereo. In: Proceedings of Australasian conference on robotics & automation
30.
Zurück zum Zitat Scaramuzza BD, Fraundorfer F, Fraundorfer BF (2011) IEEE Robot Autom Mag. Visual odometry 18:80–92 Scaramuzza BD, Fraundorfer F, Fraundorfer BF (2011) IEEE Robot Autom Mag. Visual odometry 18:80–92
31.
Zurück zum Zitat Papoulis A, Pillai SU (2002) One function of two random variables. In: Probability, random variables, and stochastic processes, 4th edn. The McGraw-Hill Companies, pp 190–192 Papoulis A, Pillai SU (2002) One function of two random variables. In: Probability, random variables, and stochastic processes, 4th edn. The McGraw-Hill Companies, pp 190–192
32.
Zurück zum Zitat Arfken GB, Weber HJ, Harris FE (2013) Probability and statistics. In: Mathematical methods for physicists, 7th edn. Academic Press, pp 1125–1179. Arfken GB, Weber HJ, Harris FE (2013) Probability and statistics. In: Mathematical methods for physicists, 7th edn. Academic Press, pp 1125–1179.
33.
Zurück zum Zitat Ploskas N, Samaras N (2016) Parallel computing toolbox. In: GPU program MATLAB, Todd Green, pp 37–70. Ploskas N, Samaras N (2016) Parallel computing toolbox. In: GPU program MATLAB, Todd Green, pp 37–70.
Metadaten
Titel
Range-based relative localization using a fixed number of measurements
verfasst von
Lin Zhang
Li Yu
Publikationsdatum
24.09.2018
Verlag
Springer Berlin Heidelberg
Erschienen in
Intelligent Service Robotics / Ausgabe 1/2019
Print ISSN: 1861-2776
Elektronische ISSN: 1861-2784
DOI
https://doi.org/10.1007/s11370-018-0261-1

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