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A wireless site survey, sometimes called an RF (Radio Frequency) site survey or wireless survey, is the process of planning and designing a wireless network, to provide a wireless solution that will deliver the required wireless coverage, data rates, network capacity, roaming capability and quality of service (QoS). [1]
NetSpot provides all professional wireless site survey features for Wi-Fi and maps coverage of a living area, office space, buildings, etc. [3] It provides visual data to help analyze radio signal leaks, discover noise sources, map channel use, optimize access point locations. Also, the application can perform Wi-Fi network planning: the data ...
Examples of projects requiring a preliminary site survey include urban construction, [2] specialized construction (such as the location for a telescope) [3] and wireless network design. [4] In hydrocarbon exploration, for example, site surveys are run over the proposed locations of offshore exploration or appraisal wells. [5]
TamoGraph is used for measuring and visualizing such WLAN characteristics [5] as signal strength, signal-to-noise ratio, signal-to-interference ratio, TCP and UDP throughput rates, access point vendor, encryption type, [citation needed] etc. [6] Visualizations are overlaid on floor plans [7] or, in case of outdoor surveys, on site maps that can be imported from one of the online map services.
An example of a WSAN would be a collection of sensors arranged throughout an agricultural facility to monitor soil moisture levels, report the data back to a computer in the main office for analysis and trend modeling, and maybe turn on automatic watering spigots if the level is too low.
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Base station survey data can be used to further narrow the past locations of a cellular device if used in conjunction with historical cell site location information ("HCSLI") obtained from a wireless carrier. HCSLI includes a list of all cell sites and sectors accessed by a cellular device, and the date and time each access was made.
RF Drive testing is a method of measuring and assessing the coverage, capacity and Quality of Service (QoS) of a mobile radio network.. The technique consists of using a motor vehicle containing mobile radio network air interface measurement equipment that can detect and record a wide variety of the physical and virtual parameters of mobile cellular service in a given geographical area.