Induction type give-way control system and method for no-signaled primary and secondary road junctions
A control system and inductive technology, applied in the field of traffic management at unsignalized intersections, can solve problems such as traffic conflicts and traffic accidents, and achieve the effects of preventing traffic accidents, reducing conflicts, and improving patency and safety.
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Embodiment 1
[0047] Such as figure 1 As shown, an inductive yield control system at primary and secondary intersections under poor line-of-sight conditions, including:
[0048] A magnetic induction detection coil 1 is provided with a stop line 3 on each entrance road leading to an unsignaled intersection, and the magnetic induction detection coil 1 is buried at the L place of each entrance road from the stop line 3 for detecting each entrance road The current speed, length and time of the vehicle;
[0049] The data transmission device is used to transmit the data obtained by the magnetic induction detection coil to the control system center at the intersection without signals for processing through wireless transmission, and to send the instructions generated by the control system center to the crystal diode signboard;
[0050] The control system center is used to calculate the time when the vehicles at the primary and secondary intersections arrive at the possible conflict points based on ...
Embodiment 2
[0058] Such as Figure 4 As shown, a primary and secondary intersection inductive yield control method under poor line of sight conditions, comprising the following steps:
[0059] Step S1, when a vehicle passes the magnetic induction detection coil 1, the magnetic induction detection coil 1 detects and records the current speed, body length and time of each entrance vehicle;
[0060] Step S2, the data transmission device transmits the data obtained by the magnetic induction detection coil 1 to the control system center at the intersection without signals through wireless transmission;
[0061] Step S3, the control system center calculates the time when the vehicles at the primary and secondary intersections arrive at the conflict point according to the data obtained by the magnetic induction detection coil 1;
[0062] Step S4, the control system center compares the time when the vehicles at the primary and secondary intersections arrive at the conflict point, and according t...
Embodiment 3
[0066] An inductive yield control method at primary and secondary intersections under poor sight distance conditions, comprising the following steps:
[0067] Step 1. When a vehicle passes through the magnetic induction detection coil 1, the magnetic induction detection coil 1 detects and records the current speed, body length and time of each entrance vehicle;
[0068] Step 2, the data transmission device transmits the data obtained by the magnetic induction detection coil 1 to the control system center at the intersection without signals through wireless transmission;
[0069] Step 3, the control system center calculates the time when the vehicles at the primary and secondary intersections arrive at the conflict point according to the data obtained by the magnetic induction detection coil 1;
[0070] Step 4. The control system center compares the time when vehicles at the primary and secondary intersections arrive at the conflict point, and generates corresponding instructio...
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