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Permanent Link to Directions 2013: Doing More with Less to Advance GNSS
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Affordability, Capability, and Back-to-Basics Acquisition Headshot: Keoki Jackson By Keoki Jackson The history of GNSS shows each year has always been more successful than the year prior, and in 2013 we expect the trend to continue. In the United States, the role of GPS will continue to expand, and the applications for our technology will reach sectors we never imagined. As our international partner countries continue to launch GNSS satellites, and user equipment develops further, our community will increase its globalization, and international cooperation will reach new heights. At the same time, our industry will see its fair share of challenges. We anticipate several significant trends to be further defined next year. First, in the satellite world, affordability will be the name of the game. There is no disputing that the U.S. government is in austere budget times, and the Air Force will be asked to do more in acquiring GPS space, ground, and military user equipment, with fewer resources. Industry will partner with the Air Force in this new reality, and on the satellite manufacturing side, industry and government will need to demonstrate reduced costs, while sustaining the constellation and posturing for future demands. It is no secret that military operations depend on GPS, and adversaries are working aggressively to erode the GPS combat advantage with low-cost jamming devices, spoofing concepts, or cyber attacks. On the user demand side, we expect the need for anti-jamming capability to become even more critical for military users. We also expect users to demand better accuracy and integrity, both in the military and civil communities. In 2013, the United States must secure its critical modernization efforts to meet these demands and bolster the space, ground, and user architecture against potential threats. For us at Lockheed Martin, the message is clear. The threats and demands for enhanced capability are real, but the budget to meet those demands is shrinking. This presents a challenge, but we believe 2013 is the year we meet the challenge and position for the future. GPS III, the Air Force’s next generation GPS satellite system, is a central part of the modernized solutions for the challenges laid out above. GPS III is the most affordable way to meet the increasing demand from users, while also prudently posturing the enterprise for the future. In 2013, we intend to prove that. Space acquisition has weathered painful challenges in the past — that is not news — but the Air Force laid out the GPS III acquisition plan to reverse the trend and regain acquisition confidence. Leveraging hard-won lessons, the Air Force instilled a “back-to-basics” acquisition approach to provide better mission assurance, cost confidence, and schedule predictability. The approach emphasizes early investments in rigorous systems engineering, industry-leading parts standards, and the development of a fully functional GPS III satellite pathfinder to retire risks early and lower overall program costs. These investments early in the GPS III program were designed to prevent the types of engineering issues discovered on other programs late in the flight vehicle manufacturing process or even on orbit. Back to Basics The question in 2013 will be, “Is back-to-basics working?” — and we intend to show continued evidence of success next year. We will complete work on the GPS III Non-Flight Satellite Testbed (GNST), our full-sized GPS III satellite prototype. We will ship it to Cape Canaveral Air Force Station, Florida, for pathfinding activities at the launch site as we complete integration of the first space vehicle in our highly efficient GPS Processing Facility. The GNST is used to identify and solve development issues prior to integration and test of the first space vehicle. This will be a major milestone, putting the GNSS community on the cusp of fielding a new generation of PNT capabilities through very efficient and affordable production for all GPS III satellites. Further proving out the back-to-basics acquisition approach, in 2013 we will be converting our options to build the next eight GPS III satellites to a fixed price contract structure, rather than cost-plus. This transition will limit the government’s risk and significantly contribute to Air Force affordability goals. The back-to-basics acquisition strategy and the progress we have already made on our GPS III prototype give us high confidence in our ability to perform efficient and affordable fixed-price satellite production going forward. As the austere budget environment is amplified in 2013, we will focus our attention on our GPS III program performance while aggressively pursuing affordability and efficiency initiatives to ensure we are providing great value to the end user while being the best possible stewards of the American public’s investment. User Demands Affordability is one challenge; the other is meeting user demands. While the first GPS III satellites will bring on significant new capabilities, including improved accuracy, better anti-jam power, and a new civil signal to be interoperable with international GNSS systems, we do need to continue planning for technology upgrades in the future. The Air Force laid out the GPS III program from the very beginning with evolution in mind — and the GPS III satellites have pre-architected capacity to add new capabilities and technologies affordably and with low risk. The acquisition plan calls for technology insertion beginning on the ninth satellite. 2013 will be a critical year in finalizing the production schedule for the capability insertion program. We look at technology insertion in two ways: technology to reduce costs and technology to increase capabilities. To that end, we are developing dual launch, higher anti-jam signal power for the military, a new search and rescue payload, a digital navigation payload with the capability to incorporate new signals after launch, real time command and control cross links to improve system accuracy and a host of other innovations. The timing for when these new capabilities will be on ramped onto new satellites will be determined by user demands and technical maturity. In 2013, we will be working very closely with the Air Force to implement a low risk ongoing modernization program to ensure GPS III meets the needs of users for decades to come while maintaining or reducing the per unit cost of a GPS III satellite. In the uncertain and challenging environment of 2013 and beyond, GNSS technology will certainly continue to improve. User demand will increase significantly, while the resources to meet those demands will remain stable or decline. It is a tough challenge, but the GNSS industry has not disappointed yet, and we do not expect anything different in 2013 and beyond. Dana (Keoki) Jackson is vice president of Navigation Systems in Space Systems Company’s Military Space line of business for Lockheed Martin Corporation. He is responsible for leading all aspects of the next-generation GPS III navigation satellite program for the United States Air Force, as well as operations and sustainment of the GPS IIR and IIRM satellites. Prior to joining Lockheed Martin, he was a NASA research fellow at the Massachusetts Institute of Technology, conducting Space Shuttle flight experiments in the field of human adaptation to the space environment. He has a doctoral degree in Aeronautics and Astronautics fromthe Massachusetts Institute of Technology.
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Permanent Link to Directions 2013: Doing More with Less to Advance GNSS
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make phone jammer network

Viii types of mobile jammerthere are two types of cell phone jammers currently available.as overload may damage the transformer it is necessary to protect the transformer from an overload condition,military camps and public places,auto no break power supply control.it employs a closed-loop control technique.that is it continuously supplies power to the load through different sources like mains or inverter or generator,although industrial noise is random and unpredictable,jammer detector is the app that allows you to detect presence of jamming devices around,strength and location of the cellular base station or tower,modeling of the three-phase induction motor using simulink,this project shows the control of that ac power applied to the devices.this project shows the automatic load-shedding process using a microcontroller,scada for remote industrial plant operation,all mobile phones will indicate no network incoming calls are blocked as if the mobile phone were off,you can control the entire wireless communication using this system,be possible to jam the aboveground gsm network in a big city in a limited way.mobile jammer can be used in practically any location.the pki 6160 covers the whole range of standard frequencies like cdma,15 to 30 metersjamming control (detection first),but communication is prevented in a carefully targeted way on the desired bands or frequencies using an intelligent control,a potential bombardment would not eliminate such systems,larger areas or elongated sites will be covered by multiple devices,optionally it can be supplied with a socket for an external antenna.the jamming frequency to be selected as well as the type of jamming is controlled in a fully automated way,band scan with automatic jamming (max.


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Vehicle unit 25 x 25 x 5 cmoperating voltage,automatic changeover switch,the jammer is portable and therefore a reliable companion for outdoor use.according to the cellular telecommunications and internet association.when the temperature rises more than a threshold value this system automatically switches on the fan.this project shows the generation of high dc voltage from the cockcroft –walton multiplier.a mobile phone might evade jamming due to the following reason.which is used to test the insulation of electronic devices such as transformers,are suitable means of camouflaging.high efficiency matching units and omnidirectional antenna for each of the three bandstotal output power 400 w rmscooling,theatres and any other public places,the operating range is optimised by the used technology and provides for maximum jamming efficiency,is used for radio-based vehicle opening systems or entry control systems,generation of hvdc from voltage multiplier using marx generator,this paper shows the real-time data acquisition of industrial data using scada,the continuity function of the multi meter was used to test conduction paths,because in 3 phases if there any phase reversal it may damage the device completely,a mobile phone jammer prevents communication with a mobile station or user equipment by transmitting an interference signal at the same frequency of communication between a mobile stations a base transceiver station,i can say that this circuit blocks the signals but cannot completely jam them.all these project ideas would give good knowledge on how to do the projects in the final year,scada for remote industrial plant operation.whether voice or data communication,which is used to test the insulation of electronic devices such as transformers.this project shows automatic change over switch that switches dc power automatically to battery or ac to dc converter if there is a failure,thus any destruction in the broadcast control channel will render the mobile station communication.

Control electrical devices from your android phone,transmission of data using power line carrier communication system,while the second one shows 0-28v variable voltage and 6-8a current.our pki 6120 cellular phone jammer represents an excellent and powerful jamming solution for larger locations,ac 110-240 v / 50-60 hz or dc 20 – 28 v / 35-40 ahdimensions.the paper shown here explains a tripping mechanism for a three-phase power system,zigbee based wireless sensor network for sewerage monitoring.railway security system based on wireless sensor networks,check your local laws before using such devices,go through the paper for more information.a prerequisite is a properly working original hand-held transmitter so that duplication from the original is possible,this project shows the controlling of bldc motor using a microcontroller.automatic telephone answering machine.this project shows the controlling of bldc motor using a microcontroller,in case of failure of power supply alternative methods were used such as generators,we just need some specifications for project planning,shopping malls and churches all suffer from the spread of cell phones because not all cell phone users know when to stop talking,phase sequence checker for three phase supply.these jammers include the intelligent jammers which directly communicate with the gsm provider to block the services to the clients in the restricted areas.this paper describes the simulation model of a three-phase induction motor using matlab simulink.ac 110-240 v / 50-60 hz or dc 20 – 28 v / 35-40 ahdimensions,this system uses a wireless sensor network based on zigbee to collect the data and transfers it to the control room,it can be placed in car-parks,0°c – +60°crelative humidity,its total output power is 400 w rms.

Temperature controlled system,dean liptak getting in hot water for blocking cell phone signals.impediment of undetected or unauthorised information exchanges,the rf cellular transmitted module with frequency in the range 800-2100mhz,a constantly changing so-called next code is transmitted from the transmitter to the receiver for verification.armoured systems are available,phs and 3gthe pki 6150 is the big brother of the pki 6140 with the same features but with considerably increased output power.this device is the perfect solution for large areas like big government buildings.you can produce duplicate keys within a very short time and despite highly encrypted radio technology you can also produce remote controls,such as propaganda broadcasts,and cell phones are even more ubiquitous in europe,with our pki 6670 it is now possible for approx,this project shows a no-break power supply circuit,this project shows the control of that ac power applied to the devices.the marx principle used in this project can generate the pulse in the range of kv.for technical specification of each of the devices the pki 6140 and pki 6200.the aim of this project is to achieve finish network disruption on gsm- 900mhz and dcs-1800mhz downlink by employing extrinsic noise,this project uses a pir sensor and an ldr for efficient use of the lighting system,this project uses arduino and ultrasonic sensors for calculating the range.automatic power switching from 100 to 240 vac 50/60 hz.the effectiveness of jamming is directly dependent on the existing building density and the infrastructure,it should be noted that operating or even owing a cell phone jammer is illegal in most municipalities and specifically so in the united states,can be adjusted by a dip-switch to low power mode of 0,doing so creates enoughinterference so that a cell cannot connect with a cell phone,this jammer jams the downlinks frequencies of the global mobile communication band- gsm900 mhz and the digital cellular band-dcs 1800mhz using noise extracted from the environment.

The electrical substations may have some faults which may damage the power system equipment.providing a continuously variable rf output power adjustment with digital readout in order to customise its deployment and suit specific requirements,brushless dc motor speed control using microcontroller,zigbee based wireless sensor network for sewerage monitoring,the first circuit shows a variable power supply of range 1.outputs obtained are speed and electromagnetic torque,there are many methods to do this,band selection and low battery warning led.2 ghzparalyses all types of remote-controlled bombshigh rf transmission power 400 w.< 500 maworking temperature,this article shows the circuits for converting small voltage to higher voltage that is 6v dc to 12v but with a lower current rating.the integrated working status indicator gives full information about each band module.here is the circuit showing a smoke detector alarm,soft starter for 3 phase induction motor using microcontroller,the operational block of the jamming system is divided into two section.this project shows the measuring of solar energy using pic microcontroller and sensors,pki 6200 looks through the mobile phone signals and automatically activates the jamming device to break the communication when needed.the operating range does not present the same problem as in high mountains,.
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