CHCNAV's Apache4 USV is the ideal choice for efficient hydrographic surveys. The Apache4 can be equipped with multibeam echosound or ADCP for accurate hydrographic information collection, and pre-planned routes in the office can facilitate efficient field surveys. In the field, the Apache4 can transfer data in real time via network bridge and 4G network with the intelligent remote control to monitor the progress of the task. Learn more:https://bit.ly/48uNM9D #chcnav #hydro #marine
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Hello Geomate 🌍 Creating a Coordinate reference system (CRS) seems to be challenging for some geomatic engineers as it is a spatial reference that differs based on local, regional or global system used to locate geographical entities. Here in this video tutorial https://lnkd.in/dAhVY_ZC You will understand and learn on how to create a CRS when configuring your DGPS for your survey Jobs. Please turn on your notification to get notified on new tutorial❤️
Creating Coordinate Reference System on Tersus #gnss RTK Receivers || NNO & UTM
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Spectrum scans are beneficial for many use-cases such as troubleshooting, interference detection and interference hunting, or verification tasks like scheduler verification or other engineering tasks. A time-gated spectrum scan, which is a power spectrum scan which applies a time gate on uplink/downlink slots/symbols and/or the guard period reveals even more details in uplink/downlink or guard period power spectrum. This allows to focus on the uplink / downlink or guard period power spectrum in 5G NR TDD networks. This educational note explains use cases for spectrum measurements, the complexity in 5G TDD and its technology basics, and which problems can be solved with the described solution. Download here: http://ms.spr.ly/60459qGnt #Mobilenetworktesting #makeideasreal #5G
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Geomatics Engineer - Surveying Operations - Mobile Mapping - 3d Scanning - Reality capture - Hydrographic Survey
fully concentrated during apache 6 and norbit multi beam training #chcnav #norbit #hydrographic #multibeam
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Ultra Short Baseline, #USBL system for underwater positioning! Interested in knowing what it does, how it functions, what are the components that make up the system, what applications it would fit into, how it can help your next underwater mission, then this article by Ben Darling from aae technologies is the one you should be reading: https://lnkd.in/eNEVztEx To find more about the underwater positioning solutions, reach out to us at SALT. #underwaterpositioning #acoustics #oceantech
Are you involved in subsea operations and need to keep a close eye on tracking underwater targets? Our Ultra-Short Baseline (USBL) system uses acoustic positioning to accurately track objects beneath the surface, but how does it actually work? A USBL has three functional elements: 🌊 A transponder or responder attached to the underwater target 🌊 A transceiver mounted under the surface vessel 🌊 A topside unit running software to process the readings, present data on screen and make operational adjustments To find out how each of these elements seamlessly work together, be sure to read our helpful blog: https://lnkd.in/eNEVztEx #USBL #ShallowWaterUSBL #DeepWaterUSBL #appliedacoustics #aaetechnologies
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😉 A component that requires certain dependencies is often referred to as the dependent object or, in the case of IoC (Invertion of Control), the target.
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Are you involved in subsea operations and need to keep a close eye on tracking underwater targets? Our Ultra-Short Baseline (USBL) system uses acoustic positioning to accurately track objects beneath the surface, but how does it actually work? A USBL has three functional elements: 🌊 A transponder or responder attached to the underwater target 🌊 A transceiver mounted under the surface vessel 🌊 A topside unit running software to process the readings, present data on screen and make operational adjustments To find out how each of these elements seamlessly work together, be sure to read our helpful blog: https://lnkd.in/eNEVztEx #USBL #ShallowWaterUSBL #DeepWaterUSBL #appliedacoustics #aaetechnologies
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Discover the new Apache Pipeline, a long-range fiber optic system! Looking for a long-distance system to protect pipelines? Don't miss the new Apache Pipeline long-range #fiber #optic #system, made for the supervision and protection of vast #pipeline #networks. This system with A.I. algorithms can detect third-party intrusions like digging or excavations, ground movement, and structural variations, as well as leaks in pipelines to prevent big damages and dangerous loss of liquid or gas. It's available in two Models: 1. Single channel - with ranges of 10 or 50km 2. Dual Channel - with ranges of 5, 30 or 50km Which are the #Technologies that make it so reliable? - DAS (Distributed Acoustic Sensing): a technology that detects acoustic signals distributed in many points of a continuous structure - OTDR (Optical Time Domain Reflectometry): a device that searches for interruption points in signal transmission by measuring the characteristics of the system #perimeterprotection #fiberopticcable #pipeline #CIAS
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Transmitting sensor data such as water quality and environmental information from underwater devices to the shore has been a long standing problem and demanding in coastal areas. Cables are unreliable and easily damaged while acoustic modems perform poorly in this zone and cannot pass a signal out of the water. CSignum electromagnetic field signaling (EMFS) addresses these issues, a magnetic field can pass data from under the water to receivers on the beach or cliff top, bidirectional data transfer offers additional benefits allowing control of devices located offshore. One example, to inflate an air bag and float the remote device to the surface for inspection and maintenance. A number of security related use cases for this capability also. www.csignum.com
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