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020 _a9783030919085
024 7 _a10.1007/978-3-030-91908-5
_2doi
040 _aES-MaUEC
_bspa
_cES-MaUEC
_dES-MaUEC
050 4 _aTK6592.M6
_b2022 EB
100 1 _aDana, Roger A.
_eautor
_4aut
_4http://id.loc.gov/vocabulary/relators/aut
_9670326
245 1 0 _aMonopulse Measurement with Active Electronically Scanned Arrays (AESAs)
_cby Roger A. Dana
250 _aFirst edition 2022
264 1 _aCham
_bSpringer International Publishing
_c2022
300 _a1 recurso en línea (XII, 99 páginas)
_b37 ilustraciones, 34 ilustraciones a color
336 _2rdacontent
_aTexto
_btxt
337 _2rdamedia
_aelectrónico
_bc
338 _2rdacarrier
_arecurso electrónico
_bcr
347 _aarchivo de texto
_bPDF
505 0 _a1.Introduction -- 2. Signal-to-Noise Ratios, the Relationship Between Signals-in-Space and Received Voltages, and AESA Gain -- 3. Theory of Phase- and Amplitude-Comparison Monopulse -- 4. Sidelobe Control in Monopulse and Design Implications -- 5. Ideal One-Way Monopulse Performance -- 6. One-Way Monopulse Performance in The Real World -- 7. Two-Way (Monostatic Radar) Monopulse Performance -- 8. Other Real-World Effects on Radar Detection Range -- 9. Examples of the Use of Monopulse Measurements in Radar Target Tracking with Kalman Filters -- 10. Fidelity and Accuracy of Monopulse Measurement Simulation -- Appendix A -- Appendix B -- Appendix C.
520 _aThis book describes monopulse implemented with Active Electronically Scanned Arrays (AESAs). Both phase- and amplitude-comparison monopulse are addressed. Limitations imposed by AESAs and non-ideal performance due to quantization, vector modulator noise, and element failures are discussed. The author addresses monopulse using modern low-cost AESAs where the hardware is often non-ideal and where one must carefully balance cost and complexity. The relationship between AESA antenna gain and monopulse measurement is shown and is used to construct an accurate "first-principles" simulation of the monopulse measurement process including both Additive White Gaussian Noise and non-ideal hardware effects.For those unfamiliar with monopulse, this book discusses both the theory and implementation of monopulse for application in modern AESA antennas. For those familiar with the ideal performance of monopulse, the book shows the sensitivity of monopulse accuracy to non-ideal hardware implementations, particularly in AESAs. For those familiar with both, the book discusses Monte-Carlo techniques for simulating the measurement process to obtain realistic, non-ideal monopulse performance vs signal-to-noise ratio. And for those working in radar, the book explains the relationship between one-way monopulse and the monostatic radar case with two-way propagation utilizing the same antenna for both transmit and receive. Shows the relationship between monopulse theory and implementation in modern AESAs; Illustrates the relationship between AESA antenna gain and monopulse accuracy; Discusses the limitations of AESA hardware implementation on simultaneous sidelobe control and monopulse measurement.
988 _aSpringer_Engineering_2022
650 7 _2embne
_9139959
_aRadar
650 7 _2embne
_9168963
_aRadio
_xAntenas
650 7 _2embne
_9683839
_aRadar en navegación
650 7 _2embne
_9671617
_aRadar en aeronáutica
776 0 8 _iPrinted edition:
_z9783030919078
776 0 8 _iPrinted edition:
_z9783030919092
776 0 8 _iPrinted edition:
_z9783030919108
856 4 0 _uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-3-030-91908-5
_zAcceso a este recurso digital (usuarios Universidad Europea de Madrid)
942 _2lcc
_cLE
_n0
998 _b05/2022
_dz
_esc
_zSI