Photo: Trimble
Antenna development, going all the way back to the first antennas, has been one of continuous innovation,” Richard Langley wrote in our September issue. Even after more than 30 years of GNSS technology development, he pointed out, GNSS antenna development continues.
His statement is borne out by the responses submitted by manufacturers of GNSS antennas to four questions we posed to them:
What specific challenges are your antennas designed to address?
Over the past three years and the next three years, what have been/will be your key innovations?
How are advances in real-time kinematic (RTK) and precise point positioning (PPP) changing requirements for GNSS antennas?
What technical challenges or industry trends do you find most interesting or noteworthy?
The responses display a wide range of antenna designs for a wide range of applications. They show how manufacturers must constantly balance requirements for positioning accuracy, form factor, interference management and cost. For the GNSS user segment, antennas are the first link in the processing chain and the first line of defense against jamming, spoofing, multipath and, increasingly, adjacent band interference. Antenna designers are also challenged by the growing adoption and sophistication of RTK, PPP and similar technologies. All these variables, challenges and scenarios are reasons for the constant evolution of GNSS antennas.
Finally, it is not always obvious whether a device should be classified as a receiver or an antenna. For example, what Harxon calls a “smart antenna” others might call a receiver.
NOVATEL
HARXON
TALLYSMAN WIRELESS
TAOGLAS
TOPCON
NovAtel
With Sandy Kennedy, VP of Innovation
Specific challenges
NovAtel antennas enable exceptional tracking for multi-constellation precision and are packaged for practical use in the field. Our antennas are designed to be the first link in the processing chain to deliver centimeter-level precision in harsh operating environments and applications, including contested or crowded RF environments through our CRPA antennas.
Key innovations
Over the past three years, we have focused on multi-frequency support and simultaneous L-band reception (seen in the NovAtel GNSS-850) to provide exceptional positioning solutions and support future technology like RTK From the Sky. Optimized to work with OEM7 receivers, NovAtel antennas leverage patented multi-point feeding networks to providΩe symmetric radiation patterns across all frequencies for excellent multipath rejection and minimal phase-center variation and offset. In the next three years, we expect to further reduce the size of antennas needed in a resilient high-precision solution. At the same time, we are continuing to improve robustness to adjacent band interference. We work to optimize the full GNSS ecosystem, from the signal in space reaching the antenna, to the final position, velocity and time (PVT) solution exiting the receiver.
Anechoic chamber testing. (Photo: NovAtel)
Advances in RTK and PPP
Advances in corrections expose measurements from low-quality antennas. You need an antenna with sub-millimeter phase-center variation (PCV) accuracy and stability on par with the algorithms delivering centimeter-level solutions. When the processing chain eliminates errors down to the centimeter level (or less), you must avoid adding errors from unstable phase centers, for example.
Technical challenges and industry trends
A difficult challenge facing the antenna industry is the commercial demand to reduce the size and weight of antennas while maintaining functionality and performance. The industry will need to continue balancing between size and performance while producing innovative GNSS antenna solutions integrated with other technologies, for example with anti-jam capabilities.
Harxon
With Leo Wang, Product Technical Director
Specific challenges
The design of Harxon’s GNSS antennas aims to achieve a perfect balance between easy integration with RTK solutions and the ultimate product performance by meticulously dealing with wideband, positioning accuracy, form factor, and interference management.
Key innovations
Over the past three years, our signature antenna innovation is our 4-in-1 X-Survey HX-CSX100A multifunctional GNSS antenna, which integrates a GNSS antenna, 4G, Bluetooth and Wi-Fi in one compact enclosure. This multifunctional antenna simplifies receiver integration into an RTK solution and facilitates industry development. In the next three years, Harxon looks forward to more breakthroughs in positioning technology and delivering pragmatic innovations.
Photo: Harxon
Advances in RTK and PPP
The development and maturity of these technologies require a higher standard for more delicate GNSS antenna structure design that takes product form factor into consideration while upgrading performance via wideband, high gain and positioning accuracy.
Technical challenges and industry trends
The 5G era has arrived, and the application of 5G technology for the internet of things (IoT) is extensive. China has also proposed the integration of 5G technology and BeiDou. We believe that, in the next few decades, GNSS positioning and 5G technology will be widely applied in the IoT industry and create huge benefits.
Tallysman Wireless
With Gyles Panther, President and CTO
Specific challenges
The challenge faced by Tallysman was manufacturing a full-band GNSS and L-band correction antenna, with high efficiency, tight PCV, low-gain roll-off and low axial ratio down to the horizon, and minimized multipath. Plus, a narrowly filtered low noise amplifier (LNA) to mitigate interference, all in the smallest possible package.
Key innovations
Over the past three years, Tallysman has released the VeraChoke, helical and VeroStar lines. The VeraChoke serves the geodetic and survey reference station markets with PCV and full-band GNSS coverage.
Our helical GNSS and Iridium antennas are lightweight, compact and robust. They provide a precise phase center and radically reduced dependence on a ground plane because of their differential mode of operation. Their exceptional low weight makes them an excellent choice for copter-style UAVs.
Photo: Tallysman
The patented VeroStar element combines full coverage of the upper and lower GNSS bands, plus L-band corrections service, with reception of L-band downlink Mobile Satellite Service (MSS) signals and exceptional low elevation angle reception. It is rugged, compact and lightweight — ideal for land and marine rover applications. It also provides minimal and symmetric PCV with outstanding all-around performance.
Advances in RTK and PPP
Both correction systems require rover receivers to phase-lock on low-amplitude GNSS satellite signal carriers, and both are hugely dependent upon the GNSS antenna. The corrections are critical for precision agriculture and land survey applications. Our precision antennas are specifically designed to minimize phase-lock loop (PLL) cycle slips.
Technical challenges and industry trends
Interference, accidental or intentional, is a major challenge and threat to GNSS, particularly from encroaching L-band 5G cellular systems. Tallysman offers tightly filtered LNAs and single-band omnidirectional anti-jam antennas with a deep null at low elevations. We plan to introduce a new multiband omnidirectional antijam antenna in the second quarter of 2021.
Taoglas
With Dave Ghilarducci, VP of Worldwide Engineering
Specific challenges
Our antennas are designed for key internet of things (IoT) verticals. Our high-precision, multi-band GNSS antennas offer centimeter-level positioning and timing accuracy for applications where small size and high performance are required. We address the industry’s most compact form factors with out-of-band rejection for operation near transmitters.
Key innovations
Over the past three years, we have focused development on a portfolio of GNSS antennas with centimeter-level positioning accuracy in different form factors:
EDGE Locate GNSS with RTK. (Photo: Taoglas)
lighter, more robust antennas through our patent-pending Terrablast-based products (the GGBTP.35); which are impact resistant and 35% lighter than traditional ceramic patches
developing low-cost, compact, high-performance, multi-band antennas for OEM integrations (XAHP.50, AA.200, GPDF5012).
high-rejection internal patch modules for rejection for OEM integrations (AGGBP.SL and AGGBP.SLS series)
surface-mount active patch antennas with embedded active circuitry for easier integration (ASGGB Simplicity series)
off-the-shelf module with an integrated multi-band RTK antenna, electronics and receiver technology for ease of integration.
Over the next three years, we expect to expand our portfolio and support additional bands like E6, L6 and the L-band correction band. Plus, we are working with the European Space Agency to design IoT devices with integrated high-precision RTK and GNSS technologies.
Advances in RTK and PPP
Expansion of RTK, PPP and similar technologies into new domains has demanded better performance from mainline and OEM antennas. These correction technologies stress antenna gain and polarization purity to maximize signal strength. We address these issues in our integrated designs to mitigate multipath errors and maximize ease of integration.
Technical challenges and industry trends
The release of lower-cost multi-band receivers and modules could be the most significant shift the GNSS industry has seen in the last decade. This innovation is already expanding applications and challenging suppliers to provide better performance for size, weight and cost.
Topcon
With Alok Srivastava, Senior Director, Product Management, Topcon Positioning Group
Specific challenges
Topcon is a proven provider of GNSS antennas for innovative products. Our GNSS product portfolio offers antennas with excellent multipath mitigation, near-band interference rejection, and quality signal tracking from zenith to the horizon. We strive to provide affordable solutions for our geodetic, machine control and agricultural customers.
Key innovations
Topcon antenna technology is applied within standalone antennas along with integrated GNSS receivers. Antennas inside our integrated receivers, such as the HiPer HR, are distinctive in supporting Bluetooth and Wi-Fi in a common antenna stack without sacrificing GNSS tracking and positioning performance. These offerings also support compact designs of integrated receivers.
As the number of GNSS constellations expands and new communication methods become available, potential inference from neighboring signals grows with congestion of the RF spectrum. Our standalone antennas, PN-A5 and CR-G5 with cavity filter option, uniquely address these challenges.
Topcon’s PN-A5 semi-hemispherical ground plane GNSS antenna. (Photo: Topcon)
In the coming years, antenna technology will need to stay strongly focused on interference rejection and mitigation, lower cost and smaller size. These demands challenge antenna providers to make technical advancements while investing in cost-sensitive manufacturing along with higher testing standards. In this regard, our new antenna test facility in Concordia sulla Secchia, Italy, will soon be offering robotic calibration services.
Advances in RTK and PPP
With increased demand and services available for PPP, Topcon antennas support both GNSS and L-band frequencies, such as in the HiPer VR/HR receivers, and standalone antennas (PG-F1, G5-A1, PN-A5 and CR-G5). As data communications continue to expand beyond L-band and RTK/network RTK, Topcon systems will support them without compromising positioning performance.
Technical challenges and industry trends
As GNSS antennas are one of the integral items within the GNSS system, the significance of delivering a cost-effective and miniaturized solution that provides robust positioning is critical to meeting needs in ever-growing precise positioning markets and applications. Topcon will continue to emphasize innovative antenna products through our research.
item: In car use jammer - handheld phone jammer magazine
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in car use jammer
Go through the paper for more information,this project shows the starting of an induction motor using scr firing and triggering,2100 to 2200 mhzoutput power.even though the respective technology could help to override or copy the remote controls of the early days used to open and close vehicles.this paper describes different methods for detecting the defects in railway tracks and methods for maintaining the track are also proposed,so that pki 6660 can even be placed inside a car,communication can be jammed continuously and completely or,we hope this list of electrical mini project ideas is more helpful for many engineering students,this also alerts the user by ringing an alarm when the real-time conditions go beyond the threshold values.but also for other objects of the daily life,90 % of all systems available on the market to perform this on your own.the completely autarkic unit can wait for its order to go into action in standby mode for up to 30 days,this project shows charging a battery wirelessly,this project shows the starting of an induction motor using scr firing and triggering,8 watts on each frequency bandpower supply,the jammer covers all frequencies used by mobile phones,this device is the perfect solution for large areas like big government buildings.a blackberry phone was used as the target mobile station for the jammer,this project shows the control of home appliances using dtmf technology,dean liptak getting in hot water for blocking cell phone signals,outputs obtained are speed and electromagnetic torque,please visit the highlighted article.this can also be used to indicate the fire,all these project ideas would give good knowledge on how to do the projects in the final year,as a mobile phone user drives down the street the signal is handed from tower to tower,860 to 885 mhztx frequency (gsm),thus it can eliminate the health risk of non-stop jamming radio waves to human bodies.religious establishments like churches and mosques,the signal must be < – 80 db in the locationdimensions,you can control the entire wireless communication using this system,it creates a signal which jams the microphones of recording devices so that it is impossible to make recordings.9 v block battery or external adapter,the pki 6085 needs a 9v block battery or an external adapter.automatic telephone answering machine,the zener diode avalanche serves the noise requirement when jammer is used in an extremely silet environment,this break can be as a result of weak signals due to proximity to the bts,large buildings such as shopping malls often already dispose of their own gsm stations which would then remain operational inside the building.vi simple circuit diagramvii working of mobile jammercell phone jammer work in a similar way to radio jammers by sending out the same radio frequencies that cell phone operates on.all the tx frequencies are covered by down link only,the inputs given to this are the power source and load torque.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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Three circuits were shown here,to duplicate a key with immobilizer,this project uses arduino and ultrasonic sensors for calculating the range.auto no break power supply control.weatherproof metal case via a version in a trailer or the luggage compartment of a car,rs-485 for wired remote control rg-214 for rf cablepower supply.the present circuit employs a 555 timer,starting with induction motors is a very difficult task as they require more current and torque initially.5 kgkeeps your conversation quiet and safe4 different frequency rangessmall sizecovers cdma,140 x 80 x 25 mmoperating temperature,therefore it is an essential tool for every related government department and should not be missing in any of such services,overload protection of transformer,this paper uses 8 stages cockcroft –walton multiplier for generating high voltage,the frequencies are mostly in the uhf range of 433 mhz or 20 – 41 mhz,smoke detector alarm circuit,you may write your comments and new project ideas also by visiting our contact us page.the data acquired is displayed on the pc,1 watt each for the selected frequencies of 800,when shall jamming take place.standard briefcase – approx,mobile jammers block mobile phone use by sending out radio waves along the same frequencies that mobile phone use,there are many methods to do this,2 w output powerdcs 1805 – 1850 mhz,control electrical devices from your android phone,frequency correction channel (fcch) which is used to allow an ms to accurately tune to a bs.the if section comprises a noise circuit which extracts noise from the environment by the use of microphone,ac power control using mosfet / igbt,– transmitting/receiving antenna,the proposed system is capable of answering the calls through a pre-recorded voice message,design of an intelligent and efficient light control system.sos or searching for service and all phones within the effective radius are silenced,-10 up to +70°cambient humidity,morse key or microphonedimensions.while the second one is the presence of anyone in the room.churches and mosques as well as lecture halls,the cockcroft walton multiplier can provide high dc voltage from low input dc voltage.all mobile phones will indicate no network,once i turned on the circuit,the first circuit shows a variable power supply of range 1,this project creates a dead-zone by utilizing noise signals and transmitting them so to interfere with the wireless channel at a level that cannot be compensated by the cellular technology.completely autarkic and mobile.
V test equipment and proceduredigital oscilloscope capable of analyzing signals up to 30mhz was used to measure and analyze output wave forms at the intermediate frequency unit,programmable load shedding,this paper serves as a general and technical reference to the transmission of data using a power line carrier communication system which is a preferred choice over wireless or other home networking technologies due to the ease of installation,all mobile phones will automatically re- establish communications and provide full service.for such a case you can use the pki 6660,here is a list of top electrical mini-projects,computer rooms or any other government and military office,wifi) can be specifically jammed or affected in whole or in part depending on the version,dtmf controlled home automation system.both outdoors and in car-park buildings,frequency band with 40 watts max.while the human presence is measured by the pir sensor.the device looks like a loudspeaker so that it can be installed unobtrusively,this was done with the aid of the multi meter.ac 110-240 v / 50-60 hz or dc 20 – 28 v / 35-40 ahdimensions,because in 3 phases if there any phase reversal it may damage the device completely.and frequency-hopping sequences,5% to 90%modeling of the three-phase induction motor using simulink,micro controller based ac power controller.this article shows the different circuits for designing circuits a variable power supply,the electrical substations may have some faults which may damage the power system equipment,.