CRAWDAD cu/wimax
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WiMax measurements made with a portable spectrum analyzer on the University of Colorado campus.This data was collected at the University of Colorado Boulder. It contains careful point measurements of the WiMax network serving the University of Colorado campus. Measurements were made with a portable spectrum analyzer and contain high fidelity measurements of CINR, RSS, EVM, RCE, Spectrum Flatness, and Frequency Shift. Several hundred measurements were taken on a 100m equalateral triangular lattice as a "first phase" sample. Additional "second phase" measurements were taken at random and optimized points.date/time of measurement start: 2011-05-01date/time of measurement end: 2011-05-01collection environment: This data was collected at the campus of University of Colorado, Boulder, USA.network configuration: All measurements were done "passively", without any greater access to the WiMax network than a typical client device would have. Five distinct Base stations (BSs) were measured operating in an educational license at 2.5 GHz:Name,Orientation,Frequency,BSID,Lng,Lat,Easting,Northing,AGL(m),Channel "Gamow_West",235,2530,"000000:000101",-105.267778,40.008056,2017383.55491878,4582293.92520922,46,116 "Gamow_East",90,2520,"000000:000102",-105.267778,40.008056,2017383.55491878,4582293.92520922,46,76 "Eng_East",120,2530,"000000:000002",-105.263056,40.007222,2017808.74220088,4582284.16821699,34,116 "Eng_West",240,2510,"000000:000001",-105.263333,40.007222,2017784.9247938,4582279.26962773,34,36 "Eng_North_GENI",0,2578,"4451DB:000701",-105.263333,40.007222,2017784.9247938,4582279.26962773,34,308 Lat/Lng are given in EPSG:4326 and Easting/Northing in EPSG:32160. The BSs on channels 36, 76, and 116 are identical, installed by Airspan and maintained by the University of Colorado IT Services. They each have a 90 degree sector pointed in the azimuthal orientation indicated. The fifth BS is an experimental GENI WiMax ("http://groups.geni.net/geni/wiki/WIMXUCO") node, using NEC hardware and maintained by researchers in the University of Colorado Computer Science Systems Laboratory.data collection methodology: Data collection was performed an Anritsu MS2721B portable spectrum analyzer, which was controlled over a National Instruments VISA interface using a Linux netbook computer and an Ethernet interface. The included source "measure.c" is the NI/VISA code that was used to collect each measurement point. The measurement devices were attached to a bicycle/hand cart. At each point, a GPS reading was taken from a hand-held Garmin GPS60 (the GPS on the Anritsu was not usable). The data contains measurements from 4 distinct campaigns: A: A 100m triangular lattice grid sample of the main CU campus, focusing on channel 76 only B: A 100m triangular lattice grid sample of the main CU campus, on the remaining channels C: Uniform random second-phase sample, focusing on channel 308 only D: Optimized second-phase samples, focusing on channel 308 only.sanitization: The data has not been sanitized or censored in any way.Tracesetcu/wimax/samplesWiMax measurements made with a portable spectrum analyzer on the University of Colorado campus.file:wimax_crawdad.zipdescription: This data was collected at the University of Colorado Boulder. It contains careful point measurements of the WiMax network serving the University of Colorado campus. Measurements were made with a portable spectrum analyzer and contain high fidelity measurements of CINR, RSS, EVM, RCE, Spectrum Flatness, and Frequency Shift. Several hundred measurements were taken on a 100m equalateral triangular lattice as a "first phase" sample. Additional "second phase" measurements were taken at random and optimized points.measurement purpose: Network Diagnosis, Bit Error Characterization, Educational Use, Network Performance Analysismethodology: The data collection procedure is as follows:1. Locate a point to measure using the map. Try to get as close to the actual point as possible. If it is on/in a building or other obstacle, go to the nearest accessible outdoor location and do the measurement there instead. If the point is totally unreachable (i.e. closest point is 100m away), then circle the point and move on.2. Write down the ID of the point being measured (i.e., 12 4 0) for the 0th measurement at point 12 4.3. Using the handheld GPS device, write down the current location and accuracy of the GPS position.4. Run the measurement script on the control computer, wait for it to finish. It will make 3 complete measurements on each channel being studied.5. Mark off the location just measured on the map with an X.At each point, the measurement script records a full constellation plot, WiMax demodulation summary, and spectrum flatness plot. These are stored on the unit and transferred off later. They are stored in a proprietary, but easy-to-parse format with the suffix .wmxe (or .stp). The directory "data" contains these measurement files. The file index.txt contains a list of all the measurements. Each line in the measurement file contains an ID like YYYYMMDDHHMMSS, which refers to a file in the directory "log". The corresponding log file lists which measurements were made and gives the IDs for those. cu/wimax Tracesamples/2012: WiMax measurements made with a portable spectrum analyzer on the University of Colorado campus. This data was collected at the University of Colorado Boulder. It contains careful point measurements of the WiMax network serving the University of Colorado campus. Measurements were made with a portable spectrum analyzer and contain high fidelity measurements of CINR, RSS, EVM, RCE, Spectrum Flatness, and Frequency Shift. Several hundred measurements were taken on a 100m equalateral triangular lattice as a "first phase" sample. Additional "second phase" measurements were taken at random and optimized points.configuration: Data collection was performed an Anritsu MS2721B portable spectrum analyzer, which was controlled over a National Instruments VISA interface using a Linux netbook computer and an Ethernet interface. The included source "measure.c" is the NI/VISA code that was used to collect each measurement point. The measurement devices were attached to a bicycle/hand cart. At each point, a GPS reading was taken from a hand-held Garmin GPS60 (the GPS on the Anritsu was not usable).format: At each point, the measurement script records a full constellation plot, WiMax demodulation summary, and spectrum flatness plot. These are stored on the unit and transferred off later. They are stored in a proprietary, but easy-to-parse format with the suffix .wmxe (or .stp). The directory "data" contains these measurement files. The file index.txt contains a list of all the measurements. Each line in the measurement file contains an ID like YYYYMMDDHHMMSS which refers to a file in the directory "log". The corresponding log file lists which measurements were made and gives the IDs for those.
本数据集收录了在科罗拉多大学校园内使用便携式频谱分析仪进行的WiMax网络测量数据。该数据采集于科罗拉多大学博尔德分校。数据中包含了针对科罗拉多大学校园WiMax网络的精确点位测量,测量工具为便携式频谱分析仪,并包含了CINR、RSS、EVM、RCE、频谱平坦度和频率偏移等高保真度测量值。在100米等边三角形网格上进行了数百次测量,作为“第一阶段”样本。此外,还进行了随机的“第二阶段”优化测量。测量起始和结束日期均为2011年5月1日。采集环境位于美国科罗拉多大学博尔德分校校园内。所有测量均为“被动式”进行,不超越典型客户端设备对WiMax网络的访问权限。测量了五个不同的基站(BSs),这些基站以2.5 GHz的教育许可证运行。数据采集方法包括使用Anritsu MS2721B便携式频谱分析仪,通过National Instruments VISA接口及Linux笔记本电脑和以太网接口进行控制。测量设备连接至自行车/手推车。在每个测量点,使用手持式Garmin GPS60(Anritsu设备上的GPS不可用)获取GPS读数。数据包含来自四个不同活动的测量值:A:聚焦于通道76的100米三角形网格网格样本;B:聚焦于剩余通道的100米三角形网格网格样本;C:针对通道308的均匀随机第二阶段样本;D:针对通道308的优化第二阶段样本。数据未经任何形式的净化或审查。
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