1. Høye, G.: Analyses of the geolocation accuracy that can be obtained from shipborne sensors by use of time difference of arrival (TDOA), scanphase, and angle of arrival (AOA) measurements. Forsvarets forskningsinstitutt. 178 (2010). https://www.ffi.no/en/publications-archive/analyses-of-the-geolocation-accuracy-that-can-be-obtained-from-shipborne-sensors-by-use-of-time-difference-of-arrival-tdoa-scanphase-and-angle-of-arrival-aoa-measurements
2. Zekavat, R.: Buehrer Handbook of Position Location: Theory, Practice and Advances, p. 1376. John Wiley and Sons, Hoboken (2019)
3. Kireev, A., Fedorenko, R., Fokin, G.: Accuracy evaluation of positioning by Cramer-Rao bound. Proc. Educ. Inst. Commun. 3(2), 77–83 (2017)
4. Lazarev, V., Fokin, G.: Positioning accuracy evaluation of radio emission sources using time difference of arrival and angle of arrival methods. Part 1. Proc. Telecommun. Univ. 5(2), 88–100 (2019)
5. Fokin, G., Lazarev, V.: Positioning accuracy evaluation of radio emission sources using time difference of arrival and angle of arrival methods. Part 2. 2D-simulation. Proc. Telecommun. Univ. 5(4), 65–78 (2019)