Create a professional academic/research poster based on the attached reference image. POSTER SIZE: - Square 1:1 format - Exact physical ratio: 1 meter × 1 meter - Designed for high-resolution printing - Dense but highly organized scientific poster - No scrolling website layout - Everything must fit inside one square poster PROJECT TITLE: “Solar Flare Nowcasting & Forecasting Platform” SUBTITLE: “Using Aditya-L1 SoLEXS + HEL1OS Data” MAIN TAGLINE: “EARLY WARNINGS | SAFER SPACE | A MORE CONNECTED EARTH” VISUAL STYLE: Create a premium ISRO/space-science aesthetic. - Dark deep-space background: black/navy/very dark blue - Large realistic glowing Sun with solar flares in the upper-right/center background - Realistic Aditya-L1 spacecraft/satellite positioned near the Sun - Subtle stars and cosmic particles - Earth visible toward the lower-left corner with realistic city lights - Warm orange/gold solar glow contrasting with cool navy/black space - Scientific, futuristic, professional and credible - Avoid a cartoon or overly futuristic gaming aesthetic - Use realistic scientific imagery - Use white typography with warm gold/orange highlights HEADER: At the top-left: - ISRO logo - “Aditya-L1” - Small text: “INDIA’S MISSION TO EXPLORE THE SUN” At the top-center: Very large bold title: “Solar Flare” with “Solar” in white and “Flare” in warm pale-gold/yellow. Directly below: “Nowcasting & Forecasting Platform” Below that, place a rounded dark translucent pill: “Using Aditya-L1 SoLEXS + HEL1OS Data” At the top-right, add: “OBSERVE UNDERSTAND PREPARE FOR A SAFER TOMORROW” Add a small handwritten-style phrase near the satellite: “From the Sun to a Safer Tomorrow” CONTENT GRID: Use a structured multi-column scientific poster layout underneath the header. Create rounded rectangular content cards with: - dark navy/black section headers - subtle gold borders - warm white/light cream content backgrounds - consistent rounded corners - small scientific icons beside each section title - clear hierarchy - compact but readable typography SECTION 1 — INTRODUCTION: Title: “1. Introduction” Text: “Solar flares are sudden, energetic releases of magnetic energy from the Sun, emitting intense X-ray radiation that can disrupt communication, power grids and satellites. Timely and accurate forecasting is crucial for mitigating space weather risks.” SECTION 2 — PROBLEM STATEMENT: Title: “2. Problem Statement” Use bullet points: • Current space-weather systems rely mainly on single-modality Soft X-ray (SXR) data (e.g., GOES XRS). • SXR shows thermal heating and has inherent time lags. • Immediate non-thermal precursor signals are often not fully utilized. • This leads to delayed detection, higher false alarms or missed events. SECTION 3 — OBJECTIVES: Title: “3. Objectives” Use bullet points: • Develop a physics-informed solar flare nowcasting and forecasting platform. • Use Aditya-L1 SoLEXS and HEL1OS data. • Enable early and accurate flare prediction. •
Create a professional academic/research poster based on the attached reference image. POSTER SIZE: - Square 1:1 format - Exact physical ratio: 1 meter × 1 meter - Designed for high-resolution printing - Dense but highly organized scientific poster - No scrolling website layout - Everything must fit inside one square poster PROJECT TITLE: “Solar Flare Nowcasting & Forecasting Platform” SUBTITLE: “Using Aditya-L1 SoLEXS + HEL1OS Data” MAIN TAGLINE: “EARLY WARNINGS | SAFER SPACE | A MORE CONNECTED EARTH” VISUAL STYLE: Create a premium ISRO/space-science aesthetic. - Dark deep-space background: black/navy/very dark blue - Large realistic glowing Sun with solar flares in the upper-right/center background - Realistic Aditya-L1 spacecraft/satellite positioned near the Sun - Subtle stars and cosmic particles - Earth visible toward the lower-left corner with realistic city lights - Warm orange/gold solar glow contrasting with cool navy/black space - Scientific, futuristic, professional and credible - Avoid a cartoon or overly futuristic gaming aesthetic - Use realistic scientific imagery - Use white typography with warm gold/orange highlights HEADER: At the top-left: - ISRO logo - “Aditya-L1” - Small text: “INDIA’S MISSION TO EXPLORE THE SUN” At the top-center: Very large bold title: “Solar Flare” with “Solar” in white and “Flare” in warm pale-gold/yellow. Directly below: “Nowcasting & Forecasting Platform” Below that, place a rounded dark translucent pill: “Using Aditya-L1 SoLEXS + HEL1OS Data” At the top-right, add: “OBSERVE UNDERSTAND PREPARE FOR A SAFER TOMORROW” Add a small handwritten-style phrase near the satellite: “From the Sun to a Safer Tomorrow” CONTENT GRID: Use a structured multi-column scientific poster layout underneath the header. Create rounded rectangular content cards with: - dark navy/black section headers - subtle gold borders - warm white/light cream content backgrounds - consistent rounded corners - small scientific icons beside each section title - clear hierarchy - compact but readable typography SECTION 1 — INTRODUCTION: Title: “1. Introduction” Text: “Solar flares are sudden, energetic releases of magnetic energy from the Sun, emitting intense X-ray radiation that can disrupt communication, power grids and satellites. Timely and accurate forecasting is crucial for mitigating space weather risks.” SECTION 2 — PROBLEM STATEMENT: Title: “2. Problem Statement” Use bullet points: • Current space-weather systems rely mainly on single-modality Soft X-ray (SXR) data (e.g., GOES XRS). • SXR shows thermal heating and has inherent time lags. • Immediate non-thermal precursor signals are often not fully utilized. • This leads to delayed detection, higher false alarms or missed events. SECTION 3 — OBJECTIVES: Title: “3. Objectives” Use bullet points: • Develop a physics-informed solar flare nowcasting and forecasting platform. • Use Aditya-L1 SoLEXS and HEL1OS data. • Enable early and accurate flare prediction. •
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This project addresses the critical threat posed by solar flares to infrastructure, aiming to enhance detection capabilities by integrating thermal and non-thermal signals. Utilising the Aditya-L1 satellite positioned at the Sun–Earth L1 point, the project employs SoLEXS for soft X-ray measurements and HEL1OS for hard X-ray data. Validation will involve benchmarking against GOES XRS standards, focusing on precision, recall, and false alarm rates, while also assessing lead time and calibration...