Microflown Technologies från Nederländerna tillverkar avancerade mätsystem för identifiering av ljudkällor baserat på deras unika ”particle velocity sensors”.
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Integrating Multiple Measurements for Enhanced 3D Sound Analysis
Acoustic Shape allows you to automatically synchronize and track the position of a 3D probe array, facilitating fast and efficient point-by-point measurements. This acoustic testing solution is especially useful for exploring non-stationary problems, visualizing transient noises or varying sound fields by using a reference signal to synchronize multiple captures. The software delivers real-time process control and noise visualization tools, along with a wide range of analysis options. This empowers users to better understand and interpret how the spatial distribution of sound emission fluctuates under varying operational conditions.
CUSTOMIZABLE ACOUSTIC VECTOR SENSOR ARRAYS
Acoustic Shape is a flexible solution due to its versatile array configurations. It accommodates from single probe setup to more advanced arrangements including 5 or even 12 acoustic vector sensor probes, meeting a wide range of customer requirements.
Having a higher number of probes reduces the total measurement time required to perform a full source characterization. Furthermore, the large array configuration also support variable distance adjustments for each of the 12 probes, allowing to get closer to the target surface at certain locations within the grid. On the other hand, using less sensors lowers the complexity of the full testing system, while maximizing the flexibility of the solution, fully compatible with Scan&Paint 3D software.
Video Export
Enhance your understanding of non-stationary sound visualization with our Acoustic Shape solution, where the dimension of time plays a crucial role in comprehending the behavior of sound. Recognizing this, our platform is designed with a powerful video export functionality, allowing for the dynamic representation of sound over time. This feature enables a more nuanced analysis and presentation of auditory data, making it easier to illustrate changes and patterns in sound behavior effectively.
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