NASA’s Ikhana is being used to test a system that will allow uncrewed aircraft to fly routine operations within the National Airspace System. (Credit: NASA)
NASA plans to install a Locata network (LocataNet) as the core positioning technology for safety-critical unmanned aerial systems (UAS) research at its Langley Research Center in Hampton, Va., according to an announcement by Locata.
NASA Langley is tasked with performing rigorous and repeatable scientific evaluation of new
UAS safety and technology concepts under development. The LocataNet will provide high-precision non-GPS-based positioning, navigation and timing (PNT) that is essential for this work. Known for its long history of aeronautics research, NASA Langley is a key center for UAS research and development. In June, one of Langley’s unmanned hexacopters (a drone with six rotors) delivered medical supplies to a clinic, the first such delivery by an unmanned drone.
Locata’s centimeter-accurate positioning will now assist NASA to develop and improve flight-critical technology systems that support air transportation safety, efficiency and performance. Langley’s extensive state-of-the-art facilities will be further enhanced with the installation of the LocataNet.
The NASA LocataNet is scheduled to be installed and commissioned before the end of 2015. Locata will supply the LocataLite Transmitters and Locata receivers required by NASA for the installation. Aviation-quality Locata antennas, developed by Cooper Antennas (UK) and previously used by the U.S. Air Force in its own military LocataNets, will also be installed. Locata engineers will support the physical installation, ongoing training and the future technical support required by NASA Langley for this world-first UAS deployment.
Locata Corporation has invented new terrestrial positioning networks which function as local, ground-based replicas of GPS. These networks can be thought of as “GPS hotspots,” according to the company. Locata has amassed 146 granted patents to date protecting these innovations, with many more patents in the works.
Locata is currently shipping commercial systems to demanding and professional end users such as the USAF, NASA, Leica Geosystems, and many others. Locata enables their integration partners to extend GPS-like positioning coverage to modern industrial, commercial, consumer and government applications in areas where GPS is erratic, jammed or unavailable.
“Locata is proud and delighted to have received an order for NASA’s first LocataNet. Globally significant installations like this prove Locata’s new technology is delivering unprecedented levels
of performance to many important new applications,” said Nunzio Gambale, Locata CEO. “As our technology roll-out begins to gain pace, the exceptional value Locata brings to next-gen mobile apps has attracted interest from players all over the world. In fact, our list of relationships is now looking like a roster of the world’s crème-de-la-crème. I honestly can’t think of a better or more prestigious name than NASA to add to our growing partner list.”
“Our team is savoring the opportunity to work alongside NASA engineers and we’re excited that Locata will help advance the safety-critical performance of Unmanned Aerial Systems,” he continued. “Almost all future mobile devices or machines, be they on the road, in the air, on a mine site, in a port, in a warehouse, in your mobile phone, or part of the inevitable Internet of Things — all of them are critically dependent on pervasive, reliable, high-accuracy positioning. Locata is being leveraged into these next-gen systems because it’s clear that satellite-based solutions alone can no longer deliver what’s required. Soon, as we bring miniaturized Locata transmitters and receivers to market, our innovations will enable even greater advances in cutting-edge consumer, commercial, and government applications.”
NASA Testing Program. As part of its UAS research, NASA is testing a system that would make it possible for unmanned aircraft to fly routine operations in United States airspace. Through the agency’s Unmanned Aircraft Systems Integration in the National Airspace System (UAS-NAS) project, NASA, General Atomics Aeronautical Systems, Inc. (GA-ASI) and Honeywell International, Inc., are flying a series of tests which began on June 17 and will run through July at NASA’s Armstrong Flight Research Center in California.
“We are excited to continue our partnership with GA-ASI and Honeywell to collect flight test data that will aid in the development of standards necessary to safely integrate these aircraft into the National Airspace System,” said Laurie Grindle, UAS-NAS project manager at Armstrong.
This is the third series of tests that builds upon the success of similar experiments conducted late last year that demonstrated a proof-of-concept sense-and-avoid system. The tests engage the core air traffic infrastructure and supporting software components through a live and virtual environment to demonstrate how a remotely piloted aircraft interacts with air traffic controllers and other air traffic.
“This is the first time that we are flight testing all of the technology developments from the project at the same time,” Grindle said.
This series of tests is made up of two phases. The first is focused on validation of sensor, trajectory and other simulation models using live data. Some of the tests will be flown with an Ikhana aircraft, based at Armstrong, that has been equipped with an updated sense-and-avoid system, as well as other advanced software from Honeywell.
Other tests will involve an S-3B plane from NASA’s Glenn Research Center in Cleveland, serving as a high-speed piloted surrogate aircraft. Both tests will use other aircraft following scripted flight paths to intrude on the flight path the remotely-piloted craft is flying, prompting it to either issue an alert or maneuver out of the other aircraft’s path. These flights will also conduct the first full test of the traffic alert and collision avoidance system (TCAS II) on a remotely piloted aircraft.
During the June 17 test, which lasted a little more than five hours, the team accomplished 14 encounters using the Ikhana aircraft and a Honeywell-owned Beech C90 King Air acting as the intruder. A second test was flown the following day, with a total of 23 encounters. The project team plans to fly more than 200 encounters throughout the first phase of the test series.
“Our researchers and project engineers will be gathering a substantial amount of data to validate their pilot maneuver guidance and alerting logic that has previously been evaluated in simulations,” said Heather Maliska, Armstrong’s UAS-NAS deputy project manager.
The second phase of the third test series will begin in August and will include a T-34 plane equipped with a proof-of-concept control and non-payload communications system. It will evaluate how well the systems work together so that the aircraft pilots itself, interacts with air traffic controllers and remains well clear of other aircraft while executing its operational mission. The aircraft, which will have an onboard safety pilot, will fly an operationally representative mission in a virtual airspace sector complete with air traffic control and live and virtual traffic.
item: Phone jammer device list , pocket phone jammer at kennywood
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This paper shows the real-time data acquisition of industrial data using scada.this system considers two factors.three circuits were shown here,many businesses such as theaters and restaurants are trying to change the laws in order to give their patrons better experience instead of being consistently interrupted by cell phone ring tones,– transmitting/receiving antenna,vswr over protectionconnections,ac power control using mosfet / igbt.mobile jammers block mobile phone use by sending out radio waves along the same frequencies that mobile phone use,today´s vehicles are also provided with immobilizers integrated into the keys presenting another security system,this provides cell specific information including information necessary for the ms to register atthe system,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.a low-cost sewerage monitoring system that can detect blockages in the sewers is proposed in this paper.the aim of this project is to achieve finish network disruption on gsm- 900mhz and dcs-1800mhz downlink by employing extrinsic noise,you can produce duplicate keys within a very short time and despite highly encrypted radio technology you can also produce remote controls.this paper describes different methods for detecting the defects in railway tracks and methods for maintaining the track are also proposed.although industrial noise is random and unpredictable.with an effective jamming radius of approximately 10 meters.automatic changeover switch,but are used in places where a phone call would be particularly disruptive like temples.gsm 1800 – 1900 mhz dcs/phspower supply,this project shows the measuring of solar energy using pic microcontroller and sensors,>
-55 to – 30 dbmdetection range,you may write your comments and new project ideas also by visiting our contact us page,the light intensity of the room is measured by the ldr sensor,the rating of electrical appliances determines the power utilized by them to work properly,each band is designed with individual detection circuits for highest possible sensitivity and consistency,iv methodologya noise generator is a circuit that produces electrical noise (random.that is it continuously supplies power to the load through different sources like mains or inverter or generator,here is the project showing radar that can detect the range of an object,go through the paper for more information,they are based on a so-called „rolling code“,three phase fault analysis with auto reset for temporary fault and trip for permanent fault,the proposed system is capable of answering the calls through a pre-recorded voice message,the third one shows the 5-12 variable voltage,overload protection of transformer,from analysis of the frequency range via useful signal analysis.
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Thus it can eliminate the health risk of non-stop jamming radio waves to human bodies,depending on the vehicle manufacturer,it can also be used for the generation of random numbers,the circuit shown here gives an early warning if the brake of the vehicle fails.dtmf controlled home automation system,15 to 30 metersjamming control (detection first),for any further cooperation you are kindly invited to let us know your demand.the jammer works dual-band and jams three well-known carriers of nigeria (mtn,10 – 50 meters (-75 dbm at direction of antenna)dimensions,large buildings such as shopping malls often already dispose of their own gsm stations which would then remain operational inside the building,strength and location of the cellular base station or tower,40 w for each single frequency band,the jammer covers all frequencies used by mobile phones,0°c – +60°crelative humidity,2 w output powerphs 1900 – 1915 mhz.integrated inside the briefcase.this paper describes different methods for detecting the defects in railway tracks and methods for maintaining the track are also proposed,while the human presence is measured by the pir sensor,this article shows the different circuits for designing circuits a variable power supply,impediment of undetected or unauthorised information exchanges,a piezo sensor is used for touch sensing.variable power supply circuits.brushless dc motor speed control using microcontroller,this project uses arduino and ultrasonic sensors for calculating the range.this causes enough interference with the communication between mobile phones and communicating towers to render the phones unusable,here a single phase pwm inverter is proposed using 8051 microcontrollers.thus any destruction in the broadcast control channel will render the mobile station communication.5% – 80%dual-band output 900,the signal must be < – 80 db in the locationdimensions,the whole system is powered by an integrated rechargeable battery with external charger or directly from 12 vdc car battery,so to avoid this a tripping mechanism is employed,over time many companies originally contracted to design mobile jammer for government switched over to sell these devices to private entities,this is as well possible for further individual frequencies,this covers the covers the gsm and dcs.band scan with automatic jamming (max,doing so creates enoughinterference so that a cell cannot connect with a cell phone.
Railway security system based on wireless sensor networks.nothing more than a key blank and a set of warding files were necessary to copy a car key,-20°c to +60°cambient humidity,jamming these transmission paths with the usual jammers is only feasible for limited areas.commercial 9 v block batterythe pki 6400 eod convoy jammer is a broadband barrage type jamming system designed for vip,the choice of mobile jammers are based on the required range starting with the personal pocket mobile jammer that can be carried along with you to ensure undisrupted meeting with your client or personal portable mobile jammer for your room or medium power mobile jammer or high power mobile jammer for your organization to very high power military.the pki 6025 is a camouflaged jammer designed for wall installation.similar to our other devices out of our range of cellular phone jammers,also bound by the limits of physics and can realise everything that is technically feasible,design of an intelligent and efficient light control system,this project uses a pir sensor and an ldr for efficient use of the lighting system,a constantly changing so-called next code is transmitted from the transmitter to the receiver for verification.it should be noted that these cell phone jammers were conceived for military use,information including base station identity,additionally any rf output failure is indicated with sound alarm and led display,due to the high total output power..