US 11,748,675 B1
Construction site automatic telematic data to project specification requirements reconciliation system
Joseph Spinelli, Harvard, MA (US); Corey Paradis, Dover, NH (US); Varadarajan Parthasarathi, Austin, TX (US); Matthew Valle, Concord, NH (US); Prajyot Bankade, Stow, MA (US); and Dhaval Patel, Roselle Park, NJ (US)
Assigned to Haul Hub Inc., Haverhill, MA (US)
Filed by Haul Hub Inc., Haverhill, MA (US)
Filed on Oct. 3, 2022, as Appl. No. 17/958,985.
Application 17/958,985 is a continuation in part of application No. 17/720,639, filed on Apr. 14, 2022, granted, now 11,461,716.
Int. Cl. G06Q 10/06 (2023.01); G06Q 10/0631 (2023.01); G06Q 50/08 (2012.01)
CPC G06Q 10/06313 (2013.01) [G06Q 50/08 (2013.01)] 17 Claims
OG exemplary drawing
 
1. A database reconciliation system, the system comprising:
an electronic database configured to store construction project data, including:
project specification data for each of a plurality of projects, each project specification datum comprising at least one of: a construction process requirement, a construction material requirement, and an end-product requirement; and
contractor data for each of a plurality of contractors;
a plurality of sensors, each sensor being:
selected from: a temperature sensor, a density sensor, a proximity sensor, a pressure sensor, a position sensor, a digital sensor, and a telematic sensor,
attached to a respective construction device selected from: a paving machine, a road roller, a loader, an intelligent/smart/connected traffic control device, and an electronic surveying device; and
configured to send operational data representing an operation of the construction device and at least one of: location of the construction device at a time the operation occurred and an identification of the construction device, via a communication network;
a server configured to automatically:
receive the operational data from the plurality of sensors;
associate each received operational datum with an associated contractor of the plurality of contractors; and
store the operational data in the electronic database as respective activity data are received;
a data reconciliation module configured to automatically associate each operational datum with an associated project in the project specification data of the electronic database; and
a comparator configured to automatically:
use at least one activity datum to reformat the at least one activity datum into an estimate of an amount of construction activity performed by the respective construction device,
identify a respective project specification requirement value in the project specification data of the associated project, wherein the project specification requirement value comprises at least one of: a material requirement value, a method requirement value, a quality assurance requirement value, and a performance requirement value;
compare the amount of construction activity performed by the respective construction device to the project specification requirement value; and
if the received observational datum is at least equal to the project specification requirement value, store requirement completion confirmation data in the electronic database for the respective project specification requirement value and the associated contractor.