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Remote Sensing
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10 March 2023

Correction: Hua et al. Path Planning of Spacecraft Cluster Orbit Reconstruction Based on ALPIO. Remote Sens. 2022, 14, 4768

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School of Astronautics, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, China
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Author to whom correspondence should be addressed.

Missing Citation

In the original article [], “strong robustness [12]” was not cited. The citation has now been inserted in Section 1, Paragraph 3”, and should read: “strong robustness [12,13]”.
In the original article, “C-W equation” was not cited. The citation has now been inserted in Section 2, Section 2.2”, “Paragraph 1, and should read: “C-W equation [20]”.
In the original article, “The velocities v(i) and v(i)+ before and after the maneuver at the ith discrete point” was not cited. The citation has now been inserted in Section 3, Section 3.1, Paragraph 1, and should read: “The velocities v(i) and v(i)+ before and after the maneuver at the ith discrete point are expressed as follows [21]”.
In the original article, “Figure 4” was not cited. The citation has now been inserted in Section 3, Section 3.2.2, Paragraph 1, and should read: “Figure 4. (a) Path entering the dangerous area and (b) path not entering the dangerous area [29]”.
In the original article, “Cauchy mutation” was not cited. The citation has now been inserted in Section 4, Section 4.4, Paragraph 3, and should read: “Cauchy mutation [34]”.
In the original article, “The second stage of the PIO is the landmark operator” was not cited. The citation has now been inserted in Section 4, Section 4.5, Paragraph 1, and should read: “The second stage of the PIO is the landmark operator [11]”.
In the original article, “Gaussian mutation” was not cited. The citation has now been inserted in Section 4, Section 4.5, Paragraph 2, and should read: “Gaussian mutation [35]”.
In the original article, “CGAPIO” was not cited. The citation has now been inserted in Section 5, Section 5.1, Paragraph 1, and should read: “CGAPIO [35]”.
Due to adding new References, the numeration of References with respect to the original publication has been modified. References [,,,,,] will appear in the document as References [13,20,21,29,34,35] respectively. The authors apologize for any inconvenience caused and state that the scientific conclusions are unaffected. The original publication has also been updated.

References

  1. Hua, B.; Yang, G.; Wu, Y.; Chen, Z. Path Planning of Spacecraft Cluster Orbit Reconstruction Based on ALPIO. Remote Sens. 2022, 14, 4768. [Google Scholar] [CrossRef]
  2. Hua, B.; Huang, Y.; Wu, Y.; Chen, Z.; Nicholas, D. Spacecraft formation reconfiguration trajectory planning with avoidance constraints using adaptive pigeon-inspired optimization. Sci. China Inf. Sci. 2019, 62, 70209. [Google Scholar] [CrossRef]
  3. Ogundele, A.D. Modeling and analysis of nonlinear spacecraft relative motion via harmonic balance and Lyapunov function. Aerosp. Sci. Technol. 2020, 99, 105761. [Google Scholar] [CrossRef]
  4. Zhang, S.; Duan, H. Gaussian pigeon-inspired optimization approach to orbital spacecraft formation reconfiguration. Chin. J. Aeronaut. 2015, 28, 200–205. [Google Scholar] [CrossRef]
  5. Hua, B.; Liu, R.P.; Sun, S.G.; Wu, Y.H.; Chen, Z.M. Spacecraft cluster orbit planning method based on adaptive population mutated pigeon group optimization. Sci. Sin. Technol. 2020, 50, 453–460. [Google Scholar]
  6. Duan, H.B.; Yang, Z.Y. Large civil aircraft receding horizon control based on Cauthy mutation pigeon inspired optimization. Sci. Sin. Technol. 2018, 48, 277–288. [Google Scholar]
  7. Hua, B.; Sun, S.; Wu, Y.; Chen, Z. Path planning method for spacecraft formation reconfiguration based on CGAPIO. J. Beijing Univ. Aeronaut. Astronaut. 2021, 47, 223–230. [Google Scholar]
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