Horizon Europe · Industrial Competitiveness in Transport
Enhancing Resilience and Accuracy in Positioning, Navigation, and Timing (PNT) Systems and e-conspicuity solutions
Call summary
From the official text, opening part
Expected Outcome: Project results are expected to contribute to all of the following expected outcomes: Development of solutions integrating 5G networks, supported by advanced signal processing techniques (e.g. AI-Enhanced Signal Processing) to improve the accuracy of PNT systems, as GNSS backup solutions to enhance resilience in contested environments, including filtering noise and interference from signals to enhance the precision of location data, and appropriate post-quantum cryptographic measures to enhance resilience against emerging threats. Integration with Other Technologies: Development of solutions leveraging Internet of Things (sensors, communication signals, AI-enhanced processing), and other sensing techniques to provide redundant and resilient navigation solutions and to enhance capabilities and applications, especially at low altitude airspace. E-conspicuity: Definition o… more
Academics who may be relevant
By subject fit
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%73ÜLVİYE HACIZADE
Shared topics: Inertial Sensor and Navigation · GNSS positioning and interference
Overlapping papers: Probabilistic Adaptive Extended Kalman Filter for Satellite Localization in the Presence of Measurement Faults (2025) · Integration of barometric and GPS altimeters via adaptive data fusion algorithm (2021)
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%65BERKANT KONAKOĞLU
Shared topics: GNSS positioning and interference · Inertial Sensor and Navigation
Overlapping papers: Evaluating the Performance of the Static PPP-AR in a Forest Environment (2024) · Prediction of geoid undulations: Random forest versus classic interpolation techniques (2022)
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%64BURHANEDDİN BİLGEN
Shared topics: GNSS positioning and interference · Inertial Sensor and Navigation
Overlapping papers: Optimizing PPP-AR with BDS-3 and GPS: Positioning Performance Across Diverse Geographical Regions Under Mostly Quiet Space Weather Conditions (2025) · Investigation of Position Accuracy in UAVs (2023)
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%64MEHMET ALİ UĞUR
Shared topics: GNSS positioning and interference · Inertial Sensor and Navigation
Overlapping papers: Analysis of October 23 (Mw 7.2) and November 9 (Mw 5.6), 2011 Van Earthquakes Using Long-Term GNSS Time Series (2017) · Determination of Surface Deformations with Global Navigation Satellite System Time Series (2018)
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%56SÜMEYRA KIRTIL AYSO
Shared topics: GNSS positioning and interference · Inertial Sensor and Navigation
Overlapping papers: GNSS ile Konum Belirlemede Farklı Troposferik Modellerin İncelenmesi (2022)
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%51MEVLÜT GÜLLÜ
Shared topics: GNSS positioning and interference · Inertial Sensor and Navigation
Overlapping papers: Comparative Analysis of Least-squares Approaches for 3D Datum Transformation in Western Turkey (2017) · compass roses on the book of navigation kitab ı bahriye declination data source for geomagnetic field models (2010)
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%50İBRAHİM TİRYAKİOĞLU
Shared topics: GNSS positioning and interference
Overlapping papers: Active tectonics, crustal strain fields and block behavior around the caucasus transition zone: constraints from combined GNSS velocities (2026) · Geodetic Constraints on Segment-Scale Slip Rates and Interseismic Coupling Along the Havran–Balıkesir Fault Zone, NW Anatolia, Türkiye (2026)
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%48SERHAT ŞENSES
Shared topics: GNSS positioning and interference
Overlapping papers: Hassas Nokta Konumlama (PPP) Tekniğinin Ağaçlık Alanlardaki Konum Belirleme Performansının CSRS-PPP Yazılımı Kullanılarak İncelenmesi (2023)
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%47EGEMEN BELGE
Shared topics: Maritime Navigation and Safety
Overlapping papers: Correlation between INS and GPS Based on Sea Surface Vehicle Motion (2020) · Sensor Fusion Based on Integrated Navigation Data of Sea Surface Vehicle with Machine Learning Method (2021)
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%46GÖKHAN KARAKÖSE
Shared topics: Infrastructure Resilience and Vulnerability Analysis
Overlapping papers: A Robust Seating Arrangement for Future Pandemics (2024)
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%45HEDİYE ERDOĞAN
Shared topics: GNSS positioning and interference
Overlapping papers: Determination of recent tectonic deformations along the Tuz Golu Fault Zone in Central Anatolia (Turkey) with GNSS observations (2022) · Research of behaviors of continuous GNSS station by signal analysis methods (2018)
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%45ŞEYMA ŞAFAK YAŞAR
Shared topics: GNSS positioning and interference
Overlapping papers: Magnitude Estimation of the 2025 Sındırgı Earthquakes Using High-Rate GNSS-Derived Peak Ground Displacement (PGD): Insights from Low-Cost and Geodetic Receivers (2026) · Hassas Nokta Konumlama Yönteminde GNSS Ölçü Süresi-Konum Doğruluğu İlişkisinin Araştırılması (2022)
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%44KEMAL YURT
Shared topics: GNSS positioning and interference
Overlapping papers: Comparison of Troposphere Models Used in Commercial GPS Softwares (2020)
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%40GÜLDANE OKU TOPAL
Shared topics: GNSS positioning and interference · Inertial Sensor and Navigation
Overlapping papers: Filtering Low-Cost GNSS Measurements to Determine Structural Behaviors: The Case of Davutpasa Pedestrian Bridge (2024) · The efficiency of single base and network RTK for Structural Health Monitoring (2022)
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%40SAMA HABIBI
Research topics: IoT and Edge/Fog Computing · Caching and Content Delivery · Mobile Crowdsensing and Crowdsourcing
The fit is computed by code on every request. The call text (title, keywords, start of the official description) is compared with three sources: semantic similarity to the academic profile (50%), shared distinctive terms in YÖKSİS keywords and OpenAlex topics (25%) and publication content — titles, English abstracts and their Turkish translations (25%). Thanks to the translations, Turkish calls also meet papers written in English. Common words weigh little; below 40% is not shown. A subject hint only — not an eligibility, capacity or merit assessment. Hidden profiles are never listed.