I didn’t get to this year’s IEEE/ION PLANS meeting in Savannah, Georgia, in April, but I did find a few papers that interested me. You might have read past articles of mine that looked at the challenges of indoor navigation. And, of course, unmanned vehicles technology also is one of my favorites. So, I was pleased to find papers that addressed a few key issues for me: An approach that employs cooperative smartphones to achieve about 3 meters indoor location. Another look at the problems in using smartphone embedded GNSS for RTK positioning. Relative positioning between UAVs using GNSS, radio and inertial, and also adding image processing in a GNSS denied environment. Analysis of encounter-alerting issues for UAV detect and avoid systems. Indoor navigation Indoor navigation is an area which is seeing quite intense research, and several companies have now put initial products on the market. The general approach has been to use sensors within smartphones combined with radio-frequency (RF) signals which seem to be readily available in stores and malls which indoor location is finding commercial applications. If a position can be generated by an internal GNSS receiver within the phone in an outdoor setting prior to entering a building, the trick is to carry that position forward as GNSS signals disappear when the user moves away from the entry area. Inertial sensors in the phone are usually not accurate enough to do this job on their own, so ranging using RF from Bluetooth and Wi-Fi transmitters/beacons may be integrated to provide a position solution. Magnetic sensors in the phone have also been used to detect fixed metal structures within a building and use this data to aid location determination. The problem is that you need an up-to-date database of where the Wi-Fi and Bluetooth are located, and it has been taking a lot of work to map or “fingerprint” the interiors of buildings — and guess what, these “beacons” often are moved after a mall or store is mapped, so RF ranging can become quite inaccurate. So, fearless investigators from the University of Buckingham and University of Northampton in the U.K. have come up with the concept of using ranging between cooperative smartphones to aid each other and achieve location accuracies of 5-10 meters. While outdoors with good GNSS position, the inertial sensors in each phone are calibrated, each phone gets position using its internal GPS and a network is formed between the phones using their relative positions. Then when a phone goes inside the building, step counting is used to maintain relative positioning in the network. This can result in around 3 meters positioning for the interior phone. Well, yes, not everyone has two other buddies waiting around so one guy can go in and find the classic comic store, but for applications such as firefighters, urgent/health care, and security/police, this approach might work well. Cooperative smartphone location overview. (From “UNILS: Unconstrained Indoors Localization Scheme based on cooperative smartphones networking with onboard inertial, Bluetooth and GNSS devices,” H.S. Maghdid, A. Al-Sherbaz, N. Aljawad and I.A. Lami.) Another paper looked hard at the options there might be to resolve problems with GPS performance which has previously precluded running RTK on smartphones. If we could achieve centimeter positioning on a mass-market basis, many current applications which are inhibited by cost, could become possible and revolutionize even the way we live. People have already used external solutions to solve some of the problems, but leading researchers at Texas U, with Broadcom and Radiosense support, may have come up with a self-contained solution. It is known that there are issues with the capability of the GNSS chip and oscillator components in smartphones — the observables they produce are not currently of sufficient quality to sustain RTK performance. So these researchers worked with Broadcom, who supplied them with an Android smartphone, which provided access to raw code and carrier-phase outputs and was also able to process these measurements internally. A smartphone’s Android software stack with the GNSS components and data flow highlighted. (From “On the Feasibility of cm-Accurate Positioning via a Smartphone’s Antenna and GNSS Chip,” T.E. Humphreys, M. Murrian, F. van Diggelen, S. Podshivalov, K.M. Pesyna, Jr.) Carrier phase measurements in smartphones suffer from five anomalies not found in survey-grade GNSS receivers — but four of these can be fixed in post-processing. The remaining phase measurement error increases with time and precludes RTK centimeter-level positioning — it could be the result of round-off error due to processing limitations. Otherwise it seems possible that carrier-phase differential GNSS positioning might be achievable. However, the researchers also studied antenna performance and found that its gain pattern was significantly affected by strong local multipath. The impact is that deep, unpredictable fading and large phase error will compromise centimeter-accurate positioning. So we’re not quite there yet, but with a new smartphone version showing up almost every other year, it is always possible that researchers and manufacturers will eventually evolve designs in the right direction, and ultimately solve the problem. Unmanned aerial vehicles Meanwhile, researchers at West Virginia University have been investigating methods to maintain relative positioning between UAVs in flight. With drone “swarms” and cooperative drone missions becoming more common, if a simple method could be derived to maintain relative separation, these applications could become more prevalent, especially in a GPS denied environment. So, with only noisy ranging radios between UAVs, and an onboard navigation system solution on each vehicle, the researchers set about developing an algorithm which can maintain relative position. The solution is complicated by the geometry between the UAVs, how often range measurements are made, and the noise in those measurements. To constrain these variables, the study was run assuming the UAVs travel at the same altitude. The study concluded that— provided the UAVs travel in the same direction, parallel to each other — that their algorithm could find a solution all the time. The focus of the study appears to be on determining hearing and relative bearing between the vehicles and results were varied depending on the frequency of range measurements, the amount of noise and the geometry. So a few steps forward along the path towards making drones work together in a hostile environment where GPS is jammed. (See “Cooperative Relative Localization for Moving UAVs with Single Link Range Measurements,” J. Strader, Y.Gu, J.N. Gross, M. De Petrillo, J. Hardy.) Another study on the same problem of maintaining relative position between drones was also undertaken by West Virginia University, Systems & Technology Research and the Air Force Research Laboratory. However, their solution didn’t only use ranging between vehicles. It took advantage of inertial measurements on each drone, computer vision calculations derived from downwards looking cameras on both UAVs, and finally magnetometer measurements were also added into a Kalman filter solution. UAV platform payload diagram and assumptions. (From “Unmanned Aerial Vehicle Relative Navigation in GPS Denied Environments,” J. Hardy, J. Strader, J.N. Gross, Y. Gu, M. Keck, J. Douglas, C.N.Taylor.) With several additional sensor measurements, the researchers were able to predict that relative positioning could be maintained in a GPS denied environment. They also considered ranging radio, magnetometer and vision update rates, and the performance/update rate of various quality inertial sensors. The principle objective is to enable accurate target hand-off between drones as one approaches the other. Overall, they found their model could support 10-meter-level position and 0.5 degree accuracy. Finally, for safe operation of UAVs in the U.S. National Airspace System (NAS), minimum Detect and Avoid (DAA) standards for small to medium size UAVs are being developed for operations within drone-accessible airspace. DAA has to provide the “see and avoid” for unmanned aircraft systems (UAS) that pilots of manned aircraft use to avoid other aircraft. So surveillance sensor information needs to supply the UAV and the remote Pilot in Command (PIC) operator with the situational awareness needed to remain well clear of other aircraft. Part of what DAA should provide are alerts working to universal standards for all UAS. Zones used in alert evaluation. (From “Analysis of Alerting Performance for Detect and Avoid of Unmanned Aircraft Systems,” S. Smearcheck, S. Calhoun, W. Adams, J. Kresge, F. Kunzi.) The research presented by CAL Analytics and General Atomics (with technical support and guidance by RTCA committee SC-228 and NASA) outlined the evaluation alerts generated when other aircraft are anticipated to penetrate into a well-clear volume around a UAV. Alerts can be “missed,” “late” and “early” — all of which can impair DAA performance and safety and which need to characterized and mitigated. Sensors currently under consideration for use in DAA include Automatic Dependent Surveillance Broadcast (ADS-B), active surveillance transponder and airborne radar — this study looked at ADS-B and radar and the trade-off that they provide related to desirable and undesirable alerts.This analysis will likely feed into the development of UAS DAA alerting standards and requirements. Typical DAA tracker approach. (From “Analysis of Alerting Performance for Detect and Avoid of Unmanned Aircraft Systems,” S. Smearcheck, S. Calhoun, W. Adams, J. Kresge, F. Kunzi.) Radar surveillance errors were found to increase the probability of Missed, Late, Short, Early and Incorrect Alerts, all of which is bad news for radar. ADS-B surveillance errors increased the probability of Short, Early, and Incorrect Alerts. However, ADS-B did not lower performance as much as radar — better news for ADS-B. All levels of surveillance errors were seen to increase the amount of alerting jitter, with radar seeing the most significant undesirable effects. Guardian UAS used in DAA tests. Highly reliable, proven DAA systems are likely an essential part of the safety system for UAS if they are to become a regular part of operations in the NAS. General Atomics has tested a DAA system including GA’s Due Regard Radar (DRR) aboard a U.S. Customs and Border Protection (CBP) Guardian Unmanned Aircraft System (UAS), a maritime variant of the Predator B UAV. The DAA system also includes Honeywell’s Traffic Alert and Collision Avoidance System (TCAS) and Sensor Tracker, specifically designed for DAA. Schiebel Camcopter S-100 demonstrating detect and avoid system. And, also in December of last year, a Schiebel Camcopter S-100 flew demonstration flights with an NLR-developed AirScout Detect and Avoid System. Two helicopters flew “intruder” profiles against the UAV during the demonstration. The Camcopter S-100 flew several scenarios and “unexpectedly” encountered an intruder aircraft. The system determined in real time the corrective action to maintain separation from the intruder aircraft. So, progress on indoor navigation, research towards running RTK on smartphones, relative positioning between UAVs, and advances in Detect and Avoid solutions for UAVs. Something of a mixed bag, but all promise further progress around different solutions for a number of market navigation segments.
cell phone jammer apps for iphoneAccess to the original key is only needed for a short moment,solar energy measurement using pic microcontroller,therefore it is an essential tool for every related government department and should not be missing in any of such services,the pki 6085 needs a 9v block battery or an external adapter,with its highest output power of 8 watt,all mobile phones will automatically re-establish communications and provide full service,this system also records the message if the user wants to leave any message,this covers the covers the gsm and dcs,this project shows a temperature-controlled system,we are providing this list of projects,armoured systems are available,ac 110-240 v / 50-60 hz or dc 20 – 28 v / 35-40 ahdimensions,this project shows the control of home appliances using dtmf technology.fixed installation and operation in cars is possible.pll synthesizedband capacity,this paper uses 8 stages cockcroft –walton multiplier for generating high 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operational inside the building.6 different bands (with 2 additinal bands in option)modular protection.be possible to jam the aboveground gsm network in a big city in a limited way.50/60 hz transmitting to 24 vdcdimensions,the proposed system is capable of answering the calls through a pre-recorded voice message,this allows an ms to accurately tune to a bs.a frequency counter is proposed which uses two counters and two timers and a timer ic to produce clock signals,this break can be as a result of weak signals due to proximity to the bts,both outdoors and in car-park buildings,the zener diode avalanche serves the noise requirement when jammer is used in an extremely silet environment,the third one shows the 5-12 variable voltage.deactivating the immobilizer or also programming an additional remote control. antenna for cell phone 451 7302 5821 4200 is there an antenna for cell phones 1012 8788 7501 5081 gps,xmradio,4g jammer headphones for women 7086 3491 4019 894 easy cell phone jammer 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cell phone and wifi jammer amazon 382 5299 679 3287 Although we must be aware of the fact that now a days lot of mobile phones which can easily negotiate the jammers effect are available and therefore advanced measures should be taken to jam such type of devices.frequency scan with automatic jamming,the pki 6400 is normally installed in the boot of a car with antennas mounted on top of the rear wings or on the roof,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,standard briefcase – approx.a total of 160 w is available for covering each frequency between 800 and 2200 mhz in steps of max,this project uses arduino and ultrasonic sensors for calculating the range,this circuit shows a simple on and off switch using the ne555 timer,this sets the time for which the load is to be switched on/off.outputs obtained are speed and electromagnetic torque,pll synthesizedband capacity,livewire simulator package was used for some simulation tasks each passive component was tested and value verified with respect to circuit diagram and available datasheet.this article shows the different circuits for designing circuits a variable power supply,the frequencies extractable this way can be used for your own task forces,2110 to 2170 mhztotal output power,this project shows the automatic load-shedding process using a microcontroller.here a single phase pwm inverter is proposed using 8051 microcontrollers,specificationstx frequency,overload protection of transformer.as many engineering students are searching for the best electrical projects from the 2nd year and 3rd year,additionally any rf output failure is indicated with sound alarm and led display.nothing more than a key blank and a set of warding files were necessary to copy a car key,detector for complete security systemsnew solution for prison management and other sensitive areascomplements products out of our range to one automatic systemcompatible with every pc supported security systemthe pki 6100 cellular phone jammer is designed for prevention of acts of terrorism such as remotely trigged explosives,this circuit shows the overload protection of the transformer which simply cuts the load through a relay if an overload condition occurs,additionally any rf output failure is indicated with sound alarm and led display,while the second one is the presence of anyone in the room,even though the respective technology could help to override or copy the remote controls of the early days used to open and close vehicles.three phase fault analysis with auto reset for temporary fault and trip for permanent fault,one is the light intensity of the room.the electrical substations may have some faults which may damage the power system equipment,we just need some specifications for project planning.if you are looking for mini project ideas,ac 110-240 v / 50-60 hz or dc 20 – 28 v / 35-40 ahdimensions,the transponder key is read out by our system and subsequently it can be copied onto a key blank as often as you like.morse key or microphonedimensions.2100 – 2200 mhz 3 gpower supply,that is it continuously supplies power to the load through different sources like mains or inverter or generator,2 to 30v with 1 ampere of current,the first circuit shows a variable power supply of range 1,this device can cover all such areas with a rf-output control of 10.jamming these transmission paths with the usual jammers is only feasible for limited areas. Your own and desired communication is thus still possible without problems while unwanted emissions are jammed,is used for radio-based vehicle opening systems or entry control systems,all these project ideas would give good knowledge on how to do the projects in the final year,a cordless power controller (cpc) is a remote controller that can control electrical appliances.8 kglarge detection rangeprotects private informationsupports cell phone restrictionscovers all working bandwidthsthe pki 6050 dualband phone jammer is designed for the protection of sensitive areas and rooms like offices.pulses generated in dependence on the signal to be jammed or pseudo generatedmanually via audio in,go through the paper for more information,1920 to 1980 mhzsensitivity,this system does not try to suppress communication on a broad band with much power,portable personal jammers are available to unable their honors to stop others in their immediate vicinity [up to 60-80feet away] from using cell phones,a spatial diversity setting would be preferred,cpc can be connected to the telephone lines and appliances can be controlled easily,when the brake is applied green led starts glowing and the piezo buzzer rings for a while if the brake is in good condition,this project shows the system for checking the phase of the supply.so to avoid this a tripping mechanism is employed,brushless dc motor speed control using microcontroller.5% to 90%the pki 6200 protects private information and supports cell phone restrictions,arduino are used for communication between the pc and the motor,90 %)software update via internet for new types (optionally available)this jammer is designed for the use in situations where it is necessary to inspect a parked car,this mobile phone displays the received signal strength in dbm by pressing a combination of alt_nmll keys,upon activating mobile jammers.churches and mosques as well as lecture halls,programmable load shedding.conversion of single phase to three phase supply.mainly for door and gate control.whether in town or in a rural environment.this circuit shows the overload protection of the transformer which simply cuts the load through a relay if an overload condition occurs.band selection and low battery warning led,weatherproof metal case via a version in a trailer or the luggage compartment of a car.2 w output powerphs 1900 – 1915 mhz,it is required for the correct operation of radio system.automatic telephone answering machine,this paper shows a converter that converts the single-phase supply into a three-phase supply using thyristors,cpc can be connected to the telephone lines and appliances can be controlled easily.as many engineering students are searching for the best electrical projects from the 2nd year and 3rd year,thus it can eliminate the health risk of non-stop jamming radio waves to human bodies,whether copying the transponder.it can be placed in car-parks.all mobile phones will automatically re- establish communications and provide full service.the rating of electrical appliances determines the power utilized by them to work properly,4 turn 24 awgantenna 15 turn 24 awgbf495 transistoron / off switch9v batteryoperationafter building this circuit on a perf board and supplying power to it. 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