Showing posts with label radio technology. Show all posts
Showing posts with label radio technology. Show all posts

Tuesday, July 17, 2012

CBP Launches Border Radio Pilot


AM Radio System Installed to Inform Land Border Crossers

Washington– U.S. Customs and Border Protection today announced the installation of a pilot AM radio broadcast system, aimed to better inform the border crossing public. CBP has installed AM radio frequency transmitters at two ports of entry on the southwest border, Ysleta in El Paso, Texas and Lincoln-Juarez in Laredo, Texas in order to communicate important border crossing information to travelers.

CBP has transformed the way it does business at land ports of entry over the last few years and one of the key elements is the concept of active lane management. This concept allows infrastructure enhancements such as improved license plate readers and radio frequency identification (RFID) technology coupled with new Ready Lanes, light emitting diode (LED) signage and Trusted Traveler lanes (NEXUS, SENTRI, FAST) to facilitate the entry process for travelers.

Furthering this concept CBP believes an informed and educated traveler is an efficient traveler.

CBP is always looking for new and effective ways to communicate with the traveling public and the model of the AM transmitter, used by many highway and traffic authorities, hopes to prove an effective tool for CBP.

Information broadcast will include reminders of document requirements and how to use high-tech travel cards, information about CBP’s Trusted Traveler Programs, basic border crossing rules and regulations, and will allow the ability for each port of entry to update with emergency travel information or updates.

While in a pilot phase, CBP will monitor the effectiveness of this new tool in a few locations on the northern and southern borders. Analysis of the pilot will inform further system installations and messaging.

U.S. Customs and Border Protection is the unified border agency within the Department of Homeland Security charged with the management, control and protection of our nation's borders at and between the official ports of entry. CBP is charged with keeping terrorists and terrorist weapons out of the country while enforcing hundreds of U.S. laws.

Tuesday, February 28, 2012

Army Rangers Test New Software-Defined Radio

WASHINGTON (Army News Service, Feb. 10, 2012) — The U.S. Army’s 75th Ranger Regiment in Afghanistan recently completed an operational assessment of the software-programmable Joint Tactical Radio Systems, or JTRS, Rifleman Radio. The assessment highlighted the radio’s ability to share combat-relevant information, voice and data across small units in real time.

“We have just entered the era of the networked Soldier,” said Col. John Zavarelli, program manager, Joint Program Executive Office, or JPEO JTRS, Handheld Manpack Small. “The individual rifleman now has a game-changing capability.”

The Operational Assessment marked the first formal combat use of the single-channel, software-defined Rifleman Radio, which uses Soldier Radio Waveform, or SRW, a high bandwidth waveform which draws upon a larger part of the available spectrum compared to legacy radios to share information and “network” forces.

Rifleman Radio is part of a family of software-programmable JTRS radios, which make use of NSA-certified encryption to safeguard and transmit information. The radios are built to send packets of data, voice, video and images via multiple waveforms between static command centers, vehicles on-the-move and even dismounted individual Soldiers on patrol.

The operational assessment of Rifleman Radio is part of an overall acquisition strategy aimed at rapidly and effectively harnessing Soldier feedback as a vital element of procurement and technology development efforts, said Brig. Gen. Michael Williamson, Joint Program Executive Officer, JTRS.

“This is a near perfect example of how early engagement by the warfighter working closely with the PM and the acquisition community can deliver capability smarter and faster,” said Williamson. “There was a tremendous amount of work done by the program manager, the Rangers and the acquisition leadership within the DOD and the Army to achieve this milestone.”

The general said the Rangers spent a lot of time using the radios and “clearly had a significant level of confidence” in the system. Rangers liked the size, weight and power of the Rifleman Radio, which provided a battery life of up to ten hours and increased the units’ ability to communicate despite obstacles such as buildings and nearby terrain.

The elite Ranger unit, which outfitted multiple platoons with the Rifleman Radio while conducting various tactical missions in Afghanistan, indicated that the systems greatly assisted their unit’s ability to exchange key information such as position location information faster, further and more efficiently across the force, Zavarelli said.

“Communications were effective and reliable,” Zavarelli said. “Team leaders and squad leaders benefitted from the position location information because of the information carried by the SRW waveform.”

Rifleman Radio and SRW allowed the Ranger units to establish a mobile, ad-hoc network. Using that network, squad leaders, commanders and dismounted infantry shared and viewed mission essential information using small, hand-held, end-user devices with display screens. The devices displayed digital maps that allowed users to view surrounding terrain and to also locate nearby friendly forces, Zavarelli explained.

“The Rangers felt the radio was very effective for conducting infantry operations, especially at the small unit level,” Zavarelli said. “Rifleman Radio allowed them to execute missions very rapidly because they had an improved awareness of where they were in relation to surrounding troops. Mission Command decisions were achieved faster.”

Using the software programmable Rifleman Radio and SRW, the Rangers were able to “network ” voice, data and information across deploying units in austere environments, without needing to rely upon a “fixed” infrastructure or GPS system to communicate across the unit while on the move.

“With the SRW networking waveform all you have to do is get to the next node,” Zavarelli said. “The waveform that we were using is critical to bending around corners. Instead of having to push through obstacles you just have to hop to the next node. They were in a situation where the networking function worked well for them.”

The success of this Rifleman Radio Operational Assessment, which included 125 radios, is expected to inform ongoing JPEO JTRS, Army and U.S. Special Operations Command considerations regarding planned future deployments of the radio. In fact, further development of the JTRS Rifleman Radio is being greatly assisted by feedback from Army Rangers who used the device in theater.

Overall, incorporating feedback from the Rangers is consistent with the aims of the Army’s ongoing bi-annual Network Integration Evaluations, which are geared toward identifying, integrating and assessing capability, systems and technologies for Soldiers before they are sent to theater, Williamson explained.

Placing a premium upon Soldier feedback is a key element of the Army’s “agile process” approach to acquisition, which seeks to expedite development and delivery of emerging technologies by evaluating them in tactically-relevant, combat-like scenarios such as the NIE.

Ultimately, the Army plans to broadly deploy the JTRS Rifleman Radio across the entire force.

(Kris Osborn writes for the Office of the Assistant Secretary of the Army for Acquisition, Logistics and Technology.)

Friday, November 4, 2011

Ten Technologies: A Brief Look at Military Evolution — Radio Equipment

By Carla Voorhees,
Defense Media Activity

This is the second in a series of 10 technologies integral to the United States military since World War I.

In the early twentieth century, radio was considered a wonder – it allowed long distance communication without wires, known as “wireless telegraphy.” Morse code was transmitted via electromagnetic waves without the need to lay miles of wires. Although there were drawbacks to the initial technology, such as interference and a lack of security, the technology evolved into the radio we know today.

The Army Signal Corps is the best-known military developer of radio technology. A list of equipment used by the Army Signal Corps can be seen here.

During World War II, radio technology evolved from simply a wireless communications tool to a hybrid approach including teletype and telephone equipment. The Army-Navy Transportable Radio Communications system (AN/TRC) was a game-changer. It could be installed much faster and with fewer personnel than traditional wire-based systems and was small enough to fit into a truck and a trailer. AN/TRC could also transmit facsimile (fax) transmissions of text, pictures, and drawings.

Additionally, during WWII, a radio technology offshoot – RADAR (essentially a tiny Doppler radio) became a critical component in the development of the proximity fuse. This allowed shells equipped with RADAR to sense the target and detonate over the target, rather than on impact, improving the accuracy of artillery fire.

Radio continued to play an integral part throughout WWII, the Korean War, Vietnam War, Cold War, and does so to this day.