Soldiers, developers assess tethered drones to extend maneuver unit vision, range

By Maddy GonzalezSeptember 2, 2026

2026 08 06 Maneuver Battle Lab Tethered UAS Assessment
1 / 4 A tethered unmanned aerial system (Te-UAS) hovers behind an Infantry Squad Vehicle-Utility (ISV-U) during a Maneuver Battle Lab (MBL) assessment at McKenna Field Landing Site on Fort Benning, Ga., Aug. 6, 2026. The two-week event, designed and executed by the MBL in collaboration with the Air Robotics, Dismounted Requirements Branch, Requirements Division, Maneuver Future Capability Directorate (MFCD) and Product Lead Strategic Spectrum Warfare (PL SSW), assessed two commercial Te-UAS capability surrogates in various conditions and tasks. (U.S. Army photo by Patrick Albright) (Photo Credit: Patrick Albright) View original
2026 08 06 Maneuver Battle Lab Tethered UAS Assessment
2 / 4 Capt. Sarah Runion, Maneuver Battle Lab (MBL) Live Experimentation Branch executive officer, controls a tethered unmanned aerial system (Te-UAS) attached to an Infantry Squad Vehicle-Utility (ISV-U) during a MBL assessment at McKenna Field Landing Site, Fort Benning, Ga., Aug. 6, 2026. The two-week assessment put the drone technology and its Soldier operators through various tactical scenarios to assess how the systems performed under various field conditions. (U.S. Army photo by Patrick Albright) (Photo Credit: Patrick Albright) View original
2026 08 06 Maneuver Battle Lab Tethered UAS Assessment
3 / 4 A tethered unmanned aerial system (Te-UAS) extends high above an Infantry Squad Vehicle-Utility (ISV-U) during a Maneuver Battle Lab (MBL) assessment at McKenna Field Landing Site at Fort Benning, Ga., Aug. 6, 2026. The MBL assessment measured the system’s potential to help future maneuver units improve communication range, counter jamming and identify distant targets. (U.S. Army photo by Patrick Albright) (Photo Credit: Patrick Albright) View original
2026 08 06 Maneuver Battle Lab Tethered UAS Assessment
4 / 4 A tethered unmanned aerial system (Te-UAS) flies over McKenna Field Landing Site on Fort Benning, Ga., during a Maneuver Battle Lab (MBL) assessment., Aug. 6, 2026. The MBL designed and executed the two-week assessment to gather the technical performance data and Soldier feedback necessary to help leaders assess the system's potential use by maneuver units. (U.S. Army photo by Patrick Albright) (Photo Credit: Patrick Albright) View original

FORT BENNING, Ga. — Maneuver Battle Lab Soldiers and capability developers gathered at McKenna Field Landing Site July 27 to Aug. 7 to assess modern tethered unmanned aircraft systems — known as Te-UAS — designed to give maneuver units the ability to overcome terrain limitations and conduct persistent reconnaissance, surveillance and extended communications.

Designed and executed by the MBL in collaboration with the Air Robotics, Dismounted Requirements Branch, Requirements Division, Maneuver Future Capability Directorate and Product Lead Strategic Spectrum Warfare, the assessment put two commercial Te-UAS capability surrogates through static, on-the-move and emergency scenarios.

During the trial, the tethered drones climbed to operationally relevant altitudes. The MBL timed ascent and retraction speeds and assessed the system’s "follow-mode" as the Te-UAS tracked above an Infantry Squad Vehicle-Utility maneuvering through the training area. Moving between designated target reference points, operators bounced communications over terrain obstacles, bypassed signal jamming and spotted targets from safe distances.

A tethered unmanned aerial system (Te-UAS) soars above the tree line while moving above an Infantry Squad Vehicle-Utility (ISV-U) during a Maneuver Battle Lab (MBL) assessment at Fort Benning, Ga., Aug. 6, 2026. MBL Soldiers maneuvered the drones at various altitudes to measure the technology against the Army's performance standards.

“The Maneuver Battle Lab’s mission is experimentation,” said Tollie Strode Jr., government oversight lead for the assessment and unmanned systems team chief at the MBL. "We take technology to the field, employ it in an operational context, look under the hood, kick the tires and report what we find to inform programmatic decisions.”

Unlike traditional free-flying drones that are limited by internal power supplies and require battery swaps, the Te-UAS receives continuous power and exchanges data through its physical tether, allowing it to remain airborne and provide capability to the force indefinitely.

"This is a great opportunity for long-endurance mission sets," said Capt. Sarah Runion, MBL Live Experimentation Branch executive officer and assessment participant. "Tethered UAS bring a lot of pros to the force: we don’t have to worry about battery life or anything like that, which you see on other drones. It can go through different levels of height, and it can follow you along on whatever platform you deem it on."

Another feature under evaluation was the system’s simple operational design, which allows users to deploy the Te-UAS rapidly without extensive specialized training.

2026 08 06 Maneuver Battle Lab Tethered UAS Assessment
1 / 2 A tethered unmanned aerial system (Te-UAS) soars above the tree line while moving above an Infantry Squad Vehicle-Utility (ISV-U) during a Maneuver Battle Lab (MBL) assessment at Fort Benning, Ga., Aug. 6, 2026. MBL Soldiers maneuvered the drones at various altitudes to measure the technology against the Army's performance standards. (U.S. Army photo by Patrick Albright) (Photo Credit: Patrick Albright) View original
2026 08 06 Maneuver Battle Lab Tethered UAS Assessment
2 / 2 A tethered unmanned aerial system (Te-UAS) retracts and lands on an Infantry Squad Vehicle-Utility (ISV-U) during a Maneuver Battle Lab (MBL) assessment at Fort Benning, Ga., Aug. 6, 2026. The technical data collected during these landing and launch cycles will be compiled into a final report to help Army leaders decide if the technology should become an official program of record. (U.S. Army photo by Patrick Albright) (Photo Credit: Patrick Albright) View original

“In a matter of minutes, I was able to get [the drone] launched up in the air … and then it’s a quick, easy one-step button to bring it back down,” said Runion. “This has been a user-friendly experience."

Mark Pagliaro, a Product Lead Strategic Spectrum Warfare contractor, compared the setup to a portable, elevated sensor suite for a maneuver unit.

"It’s similar to a very high tower," Pagliaro said. "Having a sensor up that high in their [area of operations] is going to influence [the maneuver unit] and allow them to extend ranges and see targets farther."

Pagliaro added that the simple deployment is "pretty much hands-off," freeing the user to focus on incoming camera feeds and data rather than piloting the aircraft.

Following the field iterations, the MBL compiles Soldier feedback, technical performance data and operational footprint details into a comprehensive final report. This package provides vital data for leaders to determine whether the Army should purchase the technology.

"When we develop a clear concept of operation and employment, it gives us credibility behind the numbers and information we provide to decision-makers,” Strode said. “It answers the 'so what?' and provides the essential analytical underpinning to determine if this technology should transition into a permanent Army program of record.”