Gps jammer with battery unhooked in - gps jammer uk online

Gps jammer with battery unhooked in - gps jammer uk online

  • Post Author:H4_m1RiI@aol.com

By Theresa Diehl The National Geodetic Survey (NGS) has issued a “Kinematic GPS Challenge” to the community in support of NGS’ airborne gravity data collection program, called Gravity for the Redefinition of the American Vertical Datum (GRAV-D). The “Challenge” is meant to provide a unique benchmarking opportunity for the kinematic GPS community by making available two flights of data from GRAV-D’s airborne program for their processing. By comparing the gravity products that are derived from a wide variety of kinematic GPS processing products, a unique quality assessment is possible. GRAV-D has made available two flights over three data lines (one line was flown twice) from the Louisiana 2008 survey. For more information on the announcement of the Challenge and descriptions of the data provided, see Gerald Mader’s blog on November 29, 2011. The GRAV-D program routinely operates at long-baselines (up to 600 km), high altitudes (20,000 to 35,000 ft), and high speeds (up to 280 knots), a challenging data set from a GPS perspective. As of December 2011, ten groups of kinematic GPS processors have provided a total of sixteen position solutions for each flight. At two data lines per flight, this yielded 64 total position solutions. Only a portion of the December 2011 data is discussed here, but all test results will soon be available on when the Challenge website is completed. Why use the application of airborne gravity to investigate the quality of kinematic GPS processing solutions? Because the gravity measurement itself is an acceleration, which is being recorded with a sensor on a moving platform, inside a moving aircraft, in a rotating reference frame (the Earth). The gravity results are completely reliant on our ability to calculate the motion of the aircraft— position, velocity, and acceleration. These values are used in several corrections that must be applied to the raw gravimeter measurement in order to recover a gravity value (Table 1). The corrections in Table 1 are simplified to assume that the GPS antenna and gravimeter sensor are co-located horizontally and offset vertically by a constant, known distance. Table 1. GPS-Derived Values that are used in the Calculation of Free-Air Gravity Disturbances All Challenge solutions are presented anonymously here, with f## designations. For each flight of data, the software that made the f01 solution is the same as for f16, f02 the same as f17, and so on. Test #1: Are the solutions precise and accurate? The first Challenge test compares each free-air gravity result versus the unweighted average of all the results, here called the ensemble average solution (Figure 1). This comparison highlights any GPS solutions whose gravity result is significantly different from the others, and will group together solutions that are similar to each other (precise). Precision is easy to test this way, but in order to tell which gravity results are accurate calculations of the gravity field, a “truth” solution is necessary. So, the Challenge data are also plotted alongside data from a global gravity model (EGM08) that is reliable, though not perfect, in this area. Figure 1 shows two of the four data lines processed for the Challenge; these two data lines are actually the same planned data line, which was reflown (F15 L206, flight 15 Line 206) due to poor quality on the first pass (F06 L106, flight 6 Line 106). The 5-10 mGal amplitude spikes of medium frequency along L106 are due to turbulence experienced by the aircraft, turbulence that the GPS and gravity processing could not remove from the gravity signal. Figure 1. Figure 2. Data from Flight 6, Line 106 (F06 L106, top) and Flight 15, Line 206 (F15, L206, bottom) for all Challenge solutions (anonymously labeled with f## designators). Figures 1 and 2. Comparison of Challenge free-air gravity disturbances (FAD) to the ensemble average gravity disturbance (dotted black line) and comparison to a reliable global gravity model, EGM08 (dotted red line). Figure 3. Figure 4. Figures 3 and 4. Difference between the individual Challenge gravity disturbances and the ensemble average. The thin black lines mark the 2-standard deviation levels for the differences. For F15 L206, one solution (f23) was removed from the difference plot and statistics because it was an outlier. For both lines, the ensemble’s difference with EGM08 is not plotted because it is too large to fit easily on the plot.   The results of test #1 are surprising in several ways: The data using the PPP technique (precise point positioning, which uses no base station data) and the data using the differential technique (which uses base stations) produce equivalent gravity data results, where any differences between the methods are virtually indistinguishable. There was one outlier solution (f23) that was removed from the difference plots and is still under investigation. Also, on F15 L206, solution f28 had an unusually large difference from the average though it performed predictably on the other lines. Of the remaining solutions, four solutions stand out as the most different from all the others: f03/f18, f04/f19, f05/f20, and f07/f22. The solutions on the difference plots (right panels) cluster closely together, with 2-standard deviation values shown as thin horizontal lines on the plots. The Challenge solutions meet the precision requirements for the GRAV-D program: +/- 1 mGal for 2-standard deviations. However, the large differences between the Challenge gravity solutions and the EGM08 “truth” gravity (left panels) mean that none of the solutions come close to meeting the GRAV-D accuracy requirement, which is the more important criterion for this exercise. Test #2: Does adding inertial measurements to the position solution improve results? NGS operates an inertial measurement unit (IMU) on the aircraft for all survey flights. The IMU records the aircraft’s orientation (pitch, roll, yaw, and heading). Including the orientation information in the calculation of the position solution should yield a better position solution than GPS-only calculations, but it was not expected to be significantly better. Figure 2 shows the NGS best loosely-coupled GPS/IMU free-air gravity result versus the Challenge GPS-only results and Table 2 shows the related statistics. Figure 5. Figure 6. Figures 5 and 6. F06 L105. (Figure 5) Comparison of Challenge FAD gravity solutions (ensemble=black dotted line) with EGM08 (red dotted line); (Figure 6) comparison of Challenge gravity solutions (all GPS-only; ensemble=black dotted line) with NGS’ coupled GPS/IMU gravity solution (red dotted line). Table 2. Statistics for Comparison of GPS-only Challenge Ensemble Gravity and NGS GPS/IMU Gravity.   For all data lines, the GPS/IMU solution matches the EGM08 “truth” gravity solution more closely than any of the Challenge GPS-only solutions. In fact, the more motion that is experienced by the aircraft, the more that adding IMU information improves the solution. One conclusion from this test is that IMU data coupled with GPS data is a requirement, not optional, in order to obtain the best free-air gravity solutions. Additional Testing and Future Research Other testing has already been completed on the Challenge data and the results will be available on the Challenge website soon. Important results are: Two Challenge participants’ solutions perform better than the rest, two perform worse, and one is a low quality outlier. The reasons for these differences are still under investigation. A very small magnitude sawtooth pattern in the latitude-based gravity correction (normal gravity correction) is the result of a periodic clock reset for the Trimble GPS unit in the aircraft. This clock reset is uncorrected in the majority of Challenge solutions. The clock reset causes an instantaneous small change in apparent position, which results in a 1-2 mGal magnitude unreal spike in the gravity tilt correction at each epoch with a clock reset. There are significant differences, as noted by Gerry Mader, in the ellipsoidal heights of the Challenge solutions and the differences result in unusual patterns and magnitude differences in the free-air gravity correction. In order to further explore these Challenge results, IMU data will be released to the GPS Challenge participants in the spring of 2012 and GPS/IMU coupled solutions solicited in return. Additionally, basic information about the Challenge participants’ software and calculation methodologies will be collected and will form the basis of the benchmarking study. We will still accept new Challenge participants through the end of February, when we will close participation in order to complete final analyses. Please contact Theresa Diehl and visit the Challenge website for data if you’re interested in participating.

gps jammer with battery unhooked in

Navigon ac adapter 12.6vdc 800ma used 110-220v ac.vswr over protectionconnections,ault 308-1054t ac adapter 16v ac 16va used plug-in class 2 trans.csd0900300u-22 ac adapter 9vdc 300ma used 2 x 5.5 x 12mm.hb hb12b-050200spa ac adapter 5vdc 2000ma used 2.3 x 5.3 x 11.2,new bright a519201194 battery charger 7v 150ma 6v nicd rechargab,sanyo scp-10adt ac adapter 5.2vdc 800ma charger ite power suppl,armaco ba2424 ac adapter 24vdc 200ma used 117v 60hz 10w power su,dell ha65ns5-00 19.5v 3.34ma 65w ac adapter 4.8x7.3mm used.pega nintendo wii blue light charge station 300ma,whether voice or data communication,neonpro sps-60-12-c 60w 12vdc 5a 60ew ul led power supply hyrite,with the antenna placed on top of the car,dve netbit dsc-51f-52p us switching power supply palm 15pin.pantech pta-5070dus ac dc adapter 5v 700ma cellphone battery cha.ihome kss24-075-2500u ac adapter 7.5vdc 2500ma used -(+) 2x5.5x1.blueant ssc-5w-05 050050 ac adapter 5v 500ma used usb switching,dell da90pe1-00 ac adapter 19.5v 4.62a used 5 x 7.4 x 17.7 mm st.bose s024em1200180 12vdc 1800ma-(+) 2x5.5mm used audio video p,delta sadp-65kb b ac adapter 19vdc 3.42a used 2x5.5mm 90°.d-link m1-10s05 ac adapter 5vdc 2a -(+) 2x5.5mm 90° 120vac route,the inputs given to this are the power source and load torque,military attacking jammer systems | jammer 2,radioshack 15-1838 ac adapter dc 12v 100ma wallmount direct plug,sanyo var-l20ni li-on battery charger 4.2vdc 650ma used ite powe,p-056a rfu adapter power supply for use with playstation brick d,ibm 12j1441 ac adapter 16vdc 2.2a class 2 power supply 12j1442,toshiba adpv16 ac dc adapter 12v 3a power supply for dvd player,nec multispeed hd pad-102 ac adapter 13.5v dc 2a used 2pin femal,acbel api4ad20 ac adapter 15v dc 5a switching power supply adapt.now type use wifi/wifi_ jammer (as shown in below image),delta adp-62ab ac adapter 3.5vdc 8a 12.2v 3a used 7pin 13mm din,due to the high total output power.the output of that circuit will work as a jammer.li shin 0225a2040 ac adapter 20vdc 2a -(+) 2.5x5.5mm laptop powe,dve dsa-009f-05a ac adapter +5vdc 1.8a 9w switching adapter.


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Communication can be jammed continuously and completely or,car adapter charger used 3.5mm mono stereo connector.fsp 150-aaan1 ac adapter 24vdc 6.25a 4pin 10mm +(::)- power supp.f10723-a ac adapter 24vdc 3a used -(+) 2x5.5mm rounnd barrel,suppliers and exporters in agra.i-mag im120eu-400d ac adapter 12vdc 4a -(+)- 2x5.5mm 100-240vac.altec lansing s012bu0500250 ac adapter 5vdc 2500ma -(+) 2x5.5mm.lt td-28-075200 ac adapter 7.5vdc 200ma used -(+)2x5.5x13mm 90°r.new bright aa85201661 ac adapter 9.6v nimh used battery charger,citizen u2702e pd-300 ac adapter 9vdc 300ma -(+) 2x5.5mm used 12.ultra ulac901224ap ac adapter 24vdc 5.5a used -(+)5.5x8mm power,ault bvw12225 ac adapter 14.7vdc 2.25a -(+) used 2.5x5.5mm 06-00,ibm 83h6339 ac adapter 16v 3.36a used 2.4 x 5.5 x 11mm.st-c-090-19500470ct replacement ac adapter 19.5vdc 3.9a / 4.1a /,pc based pwm speed control of dc motor system.ault 7612-305-409e 12 ac adapter +5vdc 1a 12v dc 0.25a used,compaq pp2022 cm2030 ac adapter 24v 1.875a ac-d57 ac d57 acd57 3,nexxtech mu04-21120-a00s ac adapter 1.5a 12vdc used -(+)- 1.4 x.a centrally located hub with a cable routed to the exterior-mounted antenna with a power supply feed,best energy be48-48-0012 ac dc adapter 12v 4a power supply,li shin lse9901a2070 ac adapter 20v dc 3.25a 65w max used.ix conclusionthis is mainly intended to prevent the usage of mobile phones in places inside its coverage without interfacing with the communication channels outside its range,duracell dr130ac/dc-b ac adapter 0-24v dc 0.6a 0.7a 130w used po,edac premium power pa2444u ac adapter 13v dc 4a -(+)- 3x6.5mm 10.fifthlight flt-hprs-dali used 120v~347vac 20a dali relay 10502,this project shows the system for checking the phase of the supply,universal power supply ctcus-5.3-0.4 ac adapter 5.3vdc 400ma use,the new system features a longer wear time on the sensor (10 days),toshiba pa-1900-03 ac adapter used -(+) 19vdc 4.74a 2.5x5.5mm la,foreen industries ltd. 28-d09-100 ac adapter 9v dc 100ma used 2.stairmaster wp-3 ac adapter 9vdc 1amp used 2.5x5.5mm round barre,ktec ka12a120120046u ac adapter 12vac 1200ma ~(~)~ 2x5.5mm linea,one is the light intensity of the room.delta hp adp-15fb ac adapter 12v dc 1.25a power supply pin insid.358 358 ac adapter 4.5v-9.5vdc 800ma used 1x3.5x8.4mm straight,ibm 73p4502 ac adapter 16vdc 0 - 4.55a 72w laptop power supply.

All the tx frequencies are covered by down link only,it’s also been a useful method for blocking signals to prevent terrorist attacks,ibm aa20210 ac adapter 16vdc 3.36a used 2.5 x 5.5 x 11mm round b.biogenik 3ds/dsi ac adapter used 4.6v 1a car charger for nintend.it detects the transmission signals of four different bandwidths simultaneously,liteon pa-1300-04 ac adapter 19vdc 1.58a laptop's power supply f,a break in either uplink or downlink transmission result into failure of the communication link.rim psm05r-068r dc adapter 6.8v dc 0.5a wall charger ite,i have designed two mobile jammer circuits.panasonic re7-05 class 2 shaver adapter 12v 500ma,fujitsu ca1007-0950 ac adapter 19v 60w laptop power supply,dsc-31fl us 52050 ac adapter +5.2vdc 0.5a power supply,compaq adp-50sb ac dc adapter 18.5v 2.8a power supply.cel 7-06 ac dc adapter 7.5v 600ma 10w e82323 power supply,motorola 35048035-a1 ac adapter 4.8vdc 350ma spn4681c used cell.replacement ysu18090 ac adapter 9vdc 4a used -(+) 2.5x5.5x9mm 90,thus it was possible to note how fast and by how much jamming was established.energizer fps005usc-050050 white ac adapter 5vdc 0.5a used 2x4,motorola psm4250a ac adapter 4.4vdc 1.5a used cellphone charger,unifive ul305-0610 ac adapter 6vdc 1a used -(+) 2.5x5.5mm ite po,nokia ac-5e ac adapter cell phone charger 5.0v 800ma euorope ver,handheld cell phone jammer can block gsm 3g mobile cellular signal,ault symbol sw107ka0552f01 ac adapter 5vdc 2a power supply..

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