1. Kim V.P., Nadiradze A.B., Popov G.A., et al. Problemy primeneniya elektroraketnykh dvigateley na kosmicheskikh apparatakh. V kn.: Model kosmosa. T. 2. Vozdeystvie kosmicheskoy sredy na materialy i oborudovanie kosmicheskikh apparatov [Problems of using electric rocket engines on spacecraft. In: Model of Space. Vol. 2. Effects of space environment on materials and equipment of spacecrafts]. Moscow, Universitet Publ., 2007, pp. 615--659 (in Russ.).
2. Raykunov G.G., ed. Voprosy zashchity kosmicheskikh apparatov ot elektrofizicheskogo vozdeystviya. Sistemnaya ballistika i effektivnost kosmicheskikh sistem distantsionnogo zondirovaniya Zemli [Issues of spacecraft protection from electrophysical effects. System ballistics and efficiency of space remote sensing systems]. Moscow, NII "ENTSITEKH" Publ., 2012.
3. Khodnenko V.P. Impact of stationary plasma thrusters on "Electro-M" and "Electro-M1" satellites operability. Voprosy elektromekhaniki. Trudy VNIIEM [Electromechanical Matters. VNIIEM Studies], 2018, vol. 164, no. 3, pp. 44--46 (in Russ.).
4. Goebel D.M., Katz I. Fundamentals of electric propulsion. New York, John Wiley & Sons, 2008.
5. Kraev M.V., Ermoshkin Yu.M., Chugunov A.E. Optimization of spacecraft engine layout for correction of orbit inclination. Izvestiya vuzov. Aviatsionnaya tekhnika, 2001, no. 3, pp. 64--66 (in Russ.).