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CASP COMPREHENSIVE SOLUTION FOR SEISMOLOGICAL DATA PROCESSING
CASP is a versatile software package specifically designed to handle and process seismological data. It is employed globally by a diverse range of institutions and organizations, such as earthquake monitoring centers, research institutions, and geophysical service providers, for both real-time and offline data analysis.
$1.250,00 – $18.750,00
OVERVIEW
Description
CASP is a versatile and advanced software package designed for seismological data processing and analysis. Widely used by earthquake monitoring centers, research institutions, and geophysical service providers, it enables both real-time and offline seismic data analysis with exceptional efficiency and accuracy.
Comprehensive Capabilities of CASP
1. Earthquake Monitoring
CASP plays a crucial role in detecting, locating, and determining the magnitude of earthquakes in real time, providing vital information for early warning systems and seismic hazard assessments.
2. Seismological Data Processing & Analysis
The software efficiently processes seismic waveforms, analyzes event characteristics, and manages extensive seismic event catalogs to support research and operational monitoring.
3. Real-Time Data Exchange
CASP facilitates seamless data exchange between seismic networks and institutions using standardized protocols, enhancing global earthquake monitoring efforts.
4. Advanced Visualization Tools
It offers a suite of visualization tools for seismic data interpretation, event localization, and real-time monitoring of network status.
5. Reliable Data Archiving
CASP ensures comprehensive data storage and metadata management, enabling long-term research and retrospective seismic studies.
Automation: Enhancing Efficiency in Seismic Data Processing
As dense seismic networks with multiple stations become more prevalent worldwide, managing vast amounts of data manually is increasingly impractical. CASP leverages automated algorithms to extract critical seismic information from raw signals, ensuring:
✔ Fast computing times for real-time analysis
✔ High reliability, comparable to manual data processing
✔ Efficient detection of microseismic events in complex datasets
By utilizing cutting-edge automation, CASP significantly enhances the efficiency and accuracy of seismic event detection and analysis across various applications, including:
- Seismic monitoring and hazard assessment
- High-resolution geophysical imaging
- Microseismicity studies during oil and gas extraction or injection
- Detection of non-tectonic events, such as quarry blasts and rockfalls
Proven Success in Scientific Research
CASP has been instrumental in numerous international scientific projects. Notably, it contributed to the creation of the first high-resolution earthquake catalog for the 2016-2017 Central Italy seismic sequences, successfully detecting over 450,000 seismic events with remarkable accuracy.
Additionally, CASP has proven effective in detecting non-tectonic surface events, such as:
- Quarry blasts
- Large rockfalls
- Low-magnitude seismic events, even near the detectability limit (depending on network geometry)
These capabilities make CASP a powerful tool for seismic hazard assessment and geophysical research, reinforcing its reputation as a leading solution for earthquake monitoring and analysis.
Key Features of CASP
✔ Event Localization – Determines earthquake latitude, longitude, and depth
✔ P & S Wave Arrival Time Detection – Enhances earthquake characterization
✔ Magnitude Calculation – Estimates local and moment magnitudes
✔ Peak Ground Motion Analysis – Includes Peak Ground Acceleration (PGA) and Peak Ground Velocity (PGV)
✔ Housner Intensity Measurement – Provides intensity estimates for different periods
✔ Spectral Amplitude Analysis – Evaluates seismic wave behavior across multiple frequency bands
Conclusion
CASP stands out as a state-of-the-art seismic data processing solution, offering a combination of real-time monitoring, advanced automation, and precise seismic analysis. Its adaptability makes it suitable for small-scale research projects as well as large-scale seismic monitoring networks, ensuring high accuracy and efficiency in earthquake detection and structural assessments.
Whether for seismological research, geophysical imaging, or structural health monitoring, CASP provides a powerful and reliable solution for understanding seismic activity and enhancing earthquake preparedness worldwide.
Additional information
TYPE | CASP-LITE, CASP-LITE-RU5, CASP-LITE-RU10, CASP-LITE-RU20, CASP-LTP, CASP-PRO-S1, CASP-PRO-INST, CASP-PRO-RU, CASP-PRO-INST-RU, CASP-CORPORATE |
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MODELS & LICENSING
CASP Software Models and Licensing Options
CASP offers a range of software models tailored for different seismic monitoring and data processing needs. Below is a breakdown of the available models, their functionalities, and licensing details.
CASP Software Models
- CASP-LITE – A cost-effective seismic data processing software license for up to 20 stations, suitable for small-scale monitoring networks.
- CASP-LITE-RU5 – Annual renewal of the CASP-LITE software for up to 5 stations, ensuring continued access to data processing capabilities.
- CASP-LITE-RU10 – Annual renewal of CASP-LITE software for networks with 6 to 10 stations, offering scalable expansion for growing projects.
- CASP-LITE-RU20 – Annual renewal of CASP-LITE software for 11 to 20 stations, ideal for mid-sized seismic networks requiring ongoing support.
- CASP-LTP – A license upgrade from CASP-LITE to CASP-PRO-S1, allowing users to transition to a more advanced platform with enhanced seismic data analysis features.
- CASP-PRO-S1 – A professional-grade software license for seismic networks with more than 20 stations, designed for large-scale earthquake monitoring and research applications.
- CASP-PRO-INST – Provides an additional instance of the CASP-PRO-S1 license, enabling multiple users to operate the software simultaneously within the same network.
- CASP-PRO-RU – Annual renewal for the CASP-PRO-S1 single instance license, ensuring continued access to CASP’s advanced seismic data processing capabilities.
- CASP-PRO-INST-RU – Annual renewal for an additional instance of CASP-PRO-S1, maintaining multi-user access within large monitoring networks.
- CASP-CORPORATE – A customized enterprise solution designed for organizations that require extensive seismic monitoring, multi-instance deployments, and high-level data processing capabilities.
Choosing the Right CASP Model
The selection of a CASP model depends on the size and complexity of the seismic network:
- Small-scale networks (≤ 20 stations) – CASP-LITE is the ideal choice, with renewal options based on the number of stations.
- Large-scale networks (> 20 stations) – CASP-PRO-S1 provides advanced functionalities, with options for multiple instances and corporate-level customization.
- Upgrade flexibility – Users can transition from CASP-LITE to CASP-PRO-S1 via the CASP-LTP upgrade.
CASP’s modular licensing ensures that organizations can scale their seismic monitoring operations efficiently, from small research networks to nationwide earthquake monitoring systems.
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OVERVIEW
Description
CASP is a versatile and advanced software package designed for seismological data processing and analysis. Widely used by earthquake monitoring centers, research institutions, and geophysical service providers, it enables both real-time and offline seismic data analysis with exceptional efficiency and accuracy.
Comprehensive Capabilities of CASP
1. Earthquake Monitoring
CASP plays a crucial role in detecting, locating, and determining the magnitude of earthquakes in real time, providing vital information for early warning systems and seismic hazard assessments.
2. Seismological Data Processing & Analysis
The software efficiently processes seismic waveforms, analyzes event characteristics, and manages extensive seismic event catalogs to support research and operational monitoring.
3. Real-Time Data Exchange
CASP facilitates seamless data exchange between seismic networks and institutions using standardized protocols, enhancing global earthquake monitoring efforts.
4. Advanced Visualization Tools
It offers a suite of visualization tools for seismic data interpretation, event localization, and real-time monitoring of network status.
5. Reliable Data Archiving
CASP ensures comprehensive data storage and metadata management, enabling long-term research and retrospective seismic studies.
Automation: Enhancing Efficiency in Seismic Data Processing
As dense seismic networks with multiple stations become more prevalent worldwide, managing vast amounts of data manually is increasingly impractical. CASP leverages automated algorithms to extract critical seismic information from raw signals, ensuring:
✔ Fast computing times for real-time analysis
✔ High reliability, comparable to manual data processing
✔ Efficient detection of microseismic events in complex datasets
By utilizing cutting-edge automation, CASP significantly enhances the efficiency and accuracy of seismic event detection and analysis across various applications, including:
- Seismic monitoring and hazard assessment
- High-resolution geophysical imaging
- Microseismicity studies during oil and gas extraction or injection
- Detection of non-tectonic events, such as quarry blasts and rockfalls
Proven Success in Scientific Research
CASP has been instrumental in numerous international scientific projects. Notably, it contributed to the creation of the first high-resolution earthquake catalog for the 2016-2017 Central Italy seismic sequences, successfully detecting over 450,000 seismic events with remarkable accuracy.
Additionally, CASP has proven effective in detecting non-tectonic surface events, such as:
- Quarry blasts
- Large rockfalls
- Low-magnitude seismic events, even near the detectability limit (depending on network geometry)
These capabilities make CASP a powerful tool for seismic hazard assessment and geophysical research, reinforcing its reputation as a leading solution for earthquake monitoring and analysis.
Key Features of CASP
✔ Event Localization – Determines earthquake latitude, longitude, and depth
✔ P & S Wave Arrival Time Detection – Enhances earthquake characterization
✔ Magnitude Calculation – Estimates local and moment magnitudes
✔ Peak Ground Motion Analysis – Includes Peak Ground Acceleration (PGA) and Peak Ground Velocity (PGV)
✔ Housner Intensity Measurement – Provides intensity estimates for different periods
✔ Spectral Amplitude Analysis – Evaluates seismic wave behavior across multiple frequency bands
Conclusion
CASP stands out as a state-of-the-art seismic data processing solution, offering a combination of real-time monitoring, advanced automation, and precise seismic analysis. Its adaptability makes it suitable for small-scale research projects as well as large-scale seismic monitoring networks, ensuring high accuracy and efficiency in earthquake detection and structural assessments.
Whether for seismological research, geophysical imaging, or structural health monitoring, CASP provides a powerful and reliable solution for understanding seismic activity and enhancing earthquake preparedness worldwide.
Additional information
TYPE | CASP-LITE, CASP-LITE-RU5, CASP-LITE-RU10, CASP-LITE-RU20, CASP-LTP, CASP-PRO-S1, CASP-PRO-INST, CASP-PRO-RU, CASP-PRO-INST-RU, CASP-CORPORATE |
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MODELS & LICENSING
CASP Software Models and Licensing Options
CASP offers a range of software models tailored for different seismic monitoring and data processing needs. Below is a breakdown of the available models, their functionalities, and licensing details.
CASP Software Models
- CASP-LITE – A cost-effective seismic data processing software license for up to 20 stations, suitable for small-scale monitoring networks.
- CASP-LITE-RU5 – Annual renewal of the CASP-LITE software for up to 5 stations, ensuring continued access to data processing capabilities.
- CASP-LITE-RU10 – Annual renewal of CASP-LITE software for networks with 6 to 10 stations, offering scalable expansion for growing projects.
- CASP-LITE-RU20 – Annual renewal of CASP-LITE software for 11 to 20 stations, ideal for mid-sized seismic networks requiring ongoing support.
- CASP-LTP – A license upgrade from CASP-LITE to CASP-PRO-S1, allowing users to transition to a more advanced platform with enhanced seismic data analysis features.
- CASP-PRO-S1 – A professional-grade software license for seismic networks with more than 20 stations, designed for large-scale earthquake monitoring and research applications.
- CASP-PRO-INST – Provides an additional instance of the CASP-PRO-S1 license, enabling multiple users to operate the software simultaneously within the same network.
- CASP-PRO-RU – Annual renewal for the CASP-PRO-S1 single instance license, ensuring continued access to CASP’s advanced seismic data processing capabilities.
- CASP-PRO-INST-RU – Annual renewal for an additional instance of CASP-PRO-S1, maintaining multi-user access within large monitoring networks.
- CASP-CORPORATE – A customized enterprise solution designed for organizations that require extensive seismic monitoring, multi-instance deployments, and high-level data processing capabilities.
Choosing the Right CASP Model
The selection of a CASP model depends on the size and complexity of the seismic network:
- Small-scale networks (≤ 20 stations) – CASP-LITE is the ideal choice, with renewal options based on the number of stations.
- Large-scale networks (> 20 stations) – CASP-PRO-S1 provides advanced functionalities, with options for multiple instances and corporate-level customization.
- Upgrade flexibility – Users can transition from CASP-LITE to CASP-PRO-S1 via the CASP-LTP upgrade.
CASP’s modular licensing ensures that organizations can scale their seismic monitoring operations efficiently, from small research networks to nationwide earthquake monitoring systems.
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