Securing physical environments through combinatorial analytics
US-2017357695-A1 · Dec 14, 2017 · US
US2025029198A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2025029198-A1 |
| Application number | US-202318224163-A |
| Country | US |
| Kind code | A1 |
| Filing date | Jul 20, 2023 |
| Priority date | Jul 20, 2023 |
| Publication date | Jan 23, 2025 |
| Grant date | — |
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A congestion control system configured to guide pedestrians to balance congestion throughout areas of a controlled environment is provided. The congestion control system is operatively connected to a plurality of sensors and a pedestrian guidance device. The sensors are configured to capture measurements corresponding to pedestrian congestion levels at various locations within the controlled environment. These measurements are provided to a congestion control system. The congestion control system uses the measurements to determine pedestrian traffic flow at the various locations of the controlled environment. The congestion control system then uses the measured congestion levels and the determined traffic flow to determine a control command. The control command is provided to the pedestrian guidance device to configure the device to provide a guidance output to the pedestrians of the controlled environment to balance and/or reduce congestion.
Opening claim text (preview).
What is claimed is: 1 . A congestion control system for controlling congestion in a controlled environment, wherein the congestion control system is operatively connected through one or a combination of wired and wireless communication channels to one or multiple sensors configured to collect measurements indicative of a traffic flow in the controlled environment and to a pedestrian guidance device arranged to affect the controlled environment, the congestion control system comprising: at least one processor; and a memory having instructions stored thereon that, when executed by the processor, cause the congestion control system to: collect the measurements indicative of a current state of traffic flow in the controlled environment; optimize a cost function including a congestion model of a system of dynamics of crowd behavior in the controlled environment to produce a control command to the pedestrian guidance device, wherein the congestion model connects a next state of congestion to a current state of congestion affected by the current state of the traffic flow influenced by the pedestrian guidance device; and control the pedestrian guidance device to produce a guidance output defined by the control command. 2 . The congestion control system of claim 1 , wherein the cost function is optimized over different instances of time within a prediction horizon, such that the cost function is a model predictive control function. 3 . The congestion control system of claim 2 , wherein a plurality of states of the traffic flow within the prediction horizon remain constant. 4 . The congestion control system of claim 2 , wherein a plurality of states of the traffic flow within the prediction horizon varies. 5 . The congestion control system of claim 4 , wherein values corresponding to the plurality of states of the traffic flow at different instances of time within the prediction horizon are defined based on historical data. 6 . The congestion control system of claim 1 , wherein the congestion model defines the next state of congestion based on a combination of the current state of congestion, the current state of the traffic flow, and a closure term defining a change of the current state of the traffic flow as a function of values of the control command. 7 . The congestion control system of claim 6 , wherein the closure term is multiplied with a multiplier between 0 and 1 indicating an effect of the control command on different people. 8 . The congestion control system of claim 7 , wherein the multiplier is fixed for different values of the control command. 9 . The congestion control system of claim 7 , wherein the multiplier is determined based on one or more pedestrian attributes and a learned routing parameter. 10 . The congestion control system of claim 9 , wherein the learned routing parameter is based on a measured effect of the control command. 11 . The congestion control system of claim 6 , wherein the current state of the traffic flow is predicted based on the current state of the congestion. 12 . The congestion control system of claim 11 , wherein the current state of the traffic flow predicted further based on one or more characteristics of the controlled environment. 13 . The congestion control system of claim 12 , wherein the one or more characteristics of the controlled environment include a segment traversal time and/or schedule data. 14 . The congestion control system of claim 11 , wherein the current state of the traffic flow is proportional to the current state of the congestion. 15 . The congestion control system of claim 11 , wherein the current state of the traffic flow is further predicted based on a predicted state of congestion. 16 . The congestion control system of claim 15 , wherein the predicted state of congestion is based on one or more characteristics of the controlled environment and the current state of the congestion. 17 . The congestion control system of claim 1 , wherein the guidance output includes a routing instruction and a presentation characteristic. 18 . The congestion control system of claim 1 , wherein the pedestrian guidance device is a display screen configured to show the guidance output. 19 . A method for controlling congestion in a controlled environment, comprising: collecting, via one or multiple sensors operatively connected to a congestion control system, measurements indicative of a current state of traffic flow in the controlled environment; optimizing, via the congestion control system, a cost function including a congestion model of a system of dynamics of crowd behavior in the controlled environment to produce a control command to a pedestrian guidance device operatively connected to the congestion control system, wherein the congestion model connects a next state of congestion to a current state of congestion affected by the current state of the traffic flow influenced by the pedestrian guidance device; and controlling, via the congestion control system, the pedestrian guidance device to produce guidance outputs defined by the control command. 20 . A non-transitory computer readable memory embodied thereon a program executable by at least one processor for performing a method for controlling congestion in a controlled environment, comprising: collecting, via one or multiple sensors operatively connected to a congestion control system, measurements indicative of a current state of traffic flow in the controlled environment; optimizing, via the congestion control system, a cost function including a congestion model of a system of dynamics of crowd behavior in the controlled environment to produce a control command to a pedestrian guidance device operatively connected to the congestion control system, wherein the congestion model connects a next state of congestion to a current state of congestion affected by the current state of the traffic flow influenced by the pedestrian guidance device; and controlling, via the congestion control system, the pedestrian guidance device to produce guidance outputs defined by the control command.
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