ISACEcosystem 6G Integrated Sensing & Communications
ISACEcosystem delivers deep architectural specifications for joint communication and radar sensing, mmWave beamforming, and next-generation 6G cellular perception.
ISACEcosystem Joint Radar-Communication Architecture
ISAC Core: 6G ISAC Engine — DFRC Baseband & Cellular Radar Processor
6G ISAC Nodes & Beamforming Subsystems
- Dual-Functional OTFS/OFDM Waveforms
- Massive MIMO Phased Array (mmWave/sub-THz)
- Micro-Doppler Target Classifier
- Reconfigurable Intelligent Surface (RIS)
- 3GPP Rel-19 Sensing Core API
Architectural Layers & Waveform Pipelines
- Capa 1: Front-End de RF en Sub-THz y Phased Array (GaN/InP PA / True-Time-Delay (TTD) / 140 GHz D-Band Active Arrays): Ultra-wideband signal generation, beam squint mitigation, and simultaneous transmission of communication and radar probing waves.
- Capa 2: Formas de Onda Duales y DSP de Banda Base (OTFS / Cyclic Prefix OFDM / Ambiguity Function Shaping / 2D-FFT): Orthogonal modulation in delay-Doppler domains, low peak-to-average power ratio coding, and deterministic clutter cancellation.
- Capa 3: Procesamiento Conjunto y Extracción de Nubes de Puntos (Range-Doppler Matrix / MUSIC & ESPRIT DOA / CFAR Detection): High-resolution angle of arrival estimation, velocity extraction, ghost artifact elimination, and 4D spatial coordinate synthesis.
- Capa 4: Malla Multi-Estática y Sensing-as-a-Service en 6G (3GPP Rel-19 SBA / Sensing Function (SF) / NEF APIs / RIS Control): Cooperative radar data fusion across distributed cells, intelligent surface reflection control, and exposure of real-time environmental digital twins.
Sensing Telemetry & Benchmarks: <2.5 cm (Resolución de Alcance) | ±0.05 m/s (Precisión de Velocidad) | 0.1° (Precisión Angular (DOA)) | 100 Hz (Tasa de Actualización)
Electromagnetic Coexistence & Precision Sensing in ISACEcosystem
Next-generation 6G communications merge high-throughput wireless data with ultra-accurate radar sensing into a single hardware and spectral envelope. ISACEcosystem establishes the mathematical formalisms, phased array transceiver designs, and signal processing pipelines required for zero-interference dual-functional operation.
Core Engineering Areas
Technical Publications