Ground equipment
The level crossing obstacle notification system efficiently transmits obstruction information to trains using the ISM band by storing crossing IDs and approach direction, reducing data volume, and employing relay devices to ensure quick and reliable communication, addressing interference and delay issues in existing systems.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2021-12-28
- Publication Date
- 2026-04-07
AI Technical Summary
Existing level crossing obstacle notification systems using the ISM band face radio interference and delayed communication due to carrier sensing, leading to unreliable transmission of urgent obstruction information, especially when multiple wireless communication systems are present, and require efficient data reduction to avoid occupying communication bands.
A level crossing obstacle notification system using a ground device that transmits and relays notification information via a wireless communication protocol, storing crossing identification information and train approach direction, limiting data transmission to essential instructions, and employing relay devices to ensure quick and reliable communication to onboard equipment.
The system ensures rapid and interference-free transmission of obstruction information to trains using the ISM band by reducing data volume and optimizing communication paths, maintaining stable operation even in congested wireless environments.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a ground device that relays and transmits notification information in a level crossing obstacle notification system.
Background Art
[0002] For railroad level crossings, obstacle detection devices and trouble notification devices (emergency buttons) for detecting obstacles within the level crossing are installed to prevent accidents. When the obstacle detection device detects an obstacle or when the trouble notification device is operated, a special signal emitter blinks and emits light to notify the crew of an approaching train of a level crossing problem. In many cases, an operation is adopted in which the driver operates the brakes and stops the train by visually recognizing the blinking light of this special signal emitter. The special signal emitter is installed at a position where it can be visually recognized from a position more than a predetermined distance ahead, but visibility may be poor due to weather conditions or the like, and there may be a case where the driver cannot visually recognize it unless approaching the special signal emitter.
[0003] Therefore, a technique for stopping a train by pattern control for transmitting information regarding the trouble state of a level crossing to an on-vehicle device and performing speed control has been considered (see, for example, Patent Documents 1 to 3). As a method of transmitting to the on-vehicle device, there are a method via a rail (see, for example, Patent Documents 1 and 2) and a method by wireless communication (see, for example, Patent Document 3). In addition, in order to support the driver's judgment on the premise of the driver's judgment, a monitoring camera for monitoring and grasping the trouble state of a level crossing is installed at the level crossing (ground), and a technique for transmitting the video of the monitoring camera to the on-vehicle device by wireless communication has been considered (see, for example, Patent Document 4).
Prior Art Documents
[0005] One possible method for transmitting information about the obstruction status of level crossings from the ground to vehicles is to use wireless communication. However, if a dedicated frequency band cannot be secured, a method using a generally open frequency band is preferable. For example, the use of a frequency band called the ISM (Industrial Scientific and Medical) band, which does not require a license, can be considered. However, this ISM band is widely used by various wireless communication systems such as Wi-Fi and Bluetooth (registered trademark). When adopting a method that uses such a generally open frequency band, radio interference from other wireless communication systems is unavoidable during wireless communication from the ground to vehicles.
[0006] Furthermore, in wireless communication using the ISM band, carrier sensing is typically required to search for an available communication band at the time of transmission. If no available communication band is found, the system will retry after a delay. Therefore, when attempting to transmit information regarding the status of a level crossing obstruction, if the communication band is being used by another wireless communication system utilizing the ISM band, a waiting period will occur. This creates a problem where information regarding the status of a level crossing obstruction, which requires urgency, cannot always be transmitted immediately from the ground.
[0007] Furthermore, to ensure reliable transmission of information from the ground to the vehicle, it is desirable to reduce the amount of data transmitted.
[0008] The problem that this invention aims to solve is to realize a new system that can transmit information about the obstruction status of a level crossing from the ground to a vehicle via wireless communication without any problems, even when using a generally available frequency band. [Means for solving the problem]
[0009] The first invention for solving the above problem is: A level crossing obstacle notification system comprising: a level crossing ground device that transmits notification information based on detection information of level crossing obstructions at each level crossing using a wireless communication protocol that can be received by on-board equipment of a train; and a ground device (for example, relay ground device 20 in Figure 1, level crossing ground device 10D-2 in Figure 7) arranged along the track and having a relay function that can relay and transmit the notification information, wherein the ground device The level crossing ground device transmits the notification information, including the instruction to the train based on the detection information and the level crossing identification information of the level crossing related to the level crossing ground device, in association with each other. A storage means (for example, the storage unit 600 in Figure 3) that stores the level crossing identification information of the level crossing to which the notification information is to be relayed as level crossing identification information that needs to be relayed, The receiving means for receiving the aforementioned notification information (for example, the wireless communication unit 500 in Figure 3), A relay means (for example, relay unit 404 in Figure 3) determines whether or not to relay the level crossing identification information contained in the received notification information by comparing it with the level crossing identification information requiring relay, and if the determination is positive, relays the received notification information using the wireless communication protocol. It is a ground-based device equipped with [the following features].
[0010] According to the first invention, even when using a generally open frequency band, a system can be realized to transmit information regarding the obstruction status of a level crossing from the ground to the train via wireless communication. In other words, the level crossing ground device transmits notification information based on detection information of an obstruction at the level crossing using a wireless communication protocol that can be received by the train's onboard equipment, and this notification information is also relayed by the ground device that receives the notification information. The level crossing ground device transmits notification information regardless of the presence of a train, but by limiting the information transmitted to information necessary for train stopping control related to the state of the level crossing, it is possible to transmit the notification information quickly without unnecessarily occupying the wireless communication band or interfering with other wireless communications. Therefore, even when using the ISM band, which is one of the generally open frequency bands, as the wireless communication, it is possible to quickly transmit notification information to the onboard equipment. Furthermore, although the distance from the level crossing to the braking point of that level crossing is relatively long, for example, about 600m, it is possible to transmit notification information about the level crossing to the onboard equipment of trains that have not yet reached the braking point, via relay transmission by the relay ground equipment.
[0011] Furthermore, by storing the crossing identification information of level crossings that should relay notification information as relay-required crossing identification information in the ground equipment, the search for a communication path from the level crossing ground equipment to the train's onboard equipment becomes unnecessary. This reduces the communication involved in searching for the communication path, and makes it possible to reduce the amount of data transmitted wirelessly across the entire system.
[0012] The second invention is, in the first invention, The storage means stores the level crossing identification information of level crossings in a predetermined direction from the ground device as level crossing identification information requiring a relay. It is a ground-based device.
[0013] According to the second invention, for example, if a predetermined direction is defined as the direction of train approach, the ground device can relay and transmit only the notification information sent from level crossings that are in the same direction as the direction of train approach. This makes it possible to transmit the notification information sent from the level crossing ground device according to the direction of train approach, such as the uphill or downhill direction.
[0014] The third invention is, in the first or second invention, The level crossing ground device transmits notification information that includes train approaching direction information indicating the up direction when transmitted in the up direction, and transmits notification information that includes train approaching direction information indicating the down direction when transmitted in the down direction. The relay means determines that relaying the notification information is unnecessary if the train approach direction information included in the notification information received by the receiving means is different from the direction from the ground device toward the level crossing related to the notification information. It is a ground-based device.
[0015] According to the third invention, the ground device can relay only notification information that includes train approach direction information that matches the direction from the ground device toward the level crossing. This makes it possible for the ground device to transmit notification information sent from the level crossing ground device according to the direction of train approach, such as the uphill or downhill direction.
[0016] The fourth invention is, in any of the first to third inventions, The aforementioned notification information further includes an ID of the notification information and information indicating the number of relays to which the notification information was relayed. When the receiving means receives notification information with the same ID, the relay means determines the notification information to be relayed which has the fewest relay counts and whose level crossing identification information matches the level crossing identification information requiring relay, updates the relay counts included in the notification information, and then relays the notification information. It is a ground-based device.
[0017] When a plurality of ground devices are arranged along the track, a situation may occur where the same notification information is relayed by a plurality of different ground devices. According to the fourth invention, in such a case, the number of relays by the ground device is included in the notification information, and by relaying the notification information with the least number of relays among the same notification information, it is possible to reduce the communication volume of the entire level crossing obstacle notification system.
[0018] The fifth invention is in any one of the first to fourth inventions, It is a ground device having the function of the level crossing ground device.
[0019] According to the fifth invention, the ground device can be realized as a level crossing ground device capable of the same relay transmission as in the first to fourth inventions. In the location where the level crossing is provided in close proximity, instead of arranging a ground device having only a relay function, by arranging a ground device having the function of the level crossing ground device (that is, the level crossing ground device), the number of ground devices to be arranged can be reduced, and a simpler configuration can be achieved for the entire system.
Brief Description of the Drawings
[0020] [Figure 1] Schematic configuration example of a level crossing obstacle notification system. [Figure 2] An example of notification information. [Figure 3] Functional configuration example of a level crossing obstacle notification system. [Figure 4] Configuration example of a level crossing obstacle notification system according to the first embodiment. [Figure 5] Configuration example of a level crossing obstacle notification system according to the second embodiment. [Figure 6] Configuration example of a level crossing obstacle notification system according to the third embodiment. [Figure 7] Configuration example of a level crossing obstacle notification system according to the fourth embodiment. [[ID=�8]] [Figure 8] Configuration example of a level crossing obstacle notification system according to the fifth embodiment.
Modes for Carrying Out the Invention
[0021] Preferred embodiments of the present invention will be described below with reference to the drawings. However, the applicable forms of the present invention are not limited to the following embodiments. Furthermore, in the drawings, the same elements are denoted by the same reference numerals.
[0022] [System Configuration] Figure 1 is a diagram showing a schematic configuration example of the level crossing obstacle notification system 1 in this embodiment, and is an overhead view of the railway tracks from above. The level crossing obstacle notification system 1 is a system that uses wireless communication to notify the onboard equipment 42 of train 40 of instructions according to the detection status of obstacles at level crossing 5 in order to prevent accidents at level crossing 5. The wireless communication used in the level crossing obstacle notification system 1 is wireless communication using the ISM (Industrial Scientific and Medical) band, such as the 2.4GHz band, 5.7GHz band, and 920MHz band, which are among the frequency bands that are generally open. Furthermore, it will be explained that train 40 is automatically controlled by the onboard equipment 42. As shown in Figure 1, the level crossing obstacle notification system 1 is configured to include a level crossing ground device 10 and a relay ground device 20. Although Figure 1 shows one level crossing ground device 10 and one relay ground device 20, it is of course possible to have a configuration with multiple level crossing ground devices 10 and relay ground devices 20.
[0023] The level crossing ground device 10 is positioned near the level crossing to be notified (target level crossing) 5 and transmits notification information 30 based on detection information from the obstacle detection device 7 installed at the level crossing 5 using a wireless communication protocol that can be received by the onboard equipment 42 of the train 40. The level crossing ground device 10 transmits the notification information 30 repeatedly, for example, at predetermined time intervals. The level crossing ground device 10 also has the function of the relay ground device 20 described later (the function of relaying and transmitting the received notification information 30).
[0024] As shown in Figure 2, the notification information 30 is information that corresponds to the notification ID, which is the ID of the notification information 30, and includes the relay count, which is information indicating the number of times the notification information 30 has been relayed, the topic, which is an instruction to the train 40 based on the detection information, and the level crossing ID, which is the level crossing identification information of the level crossing (target level crossing) 5 related to the level crossing ground device 10 to which the notification information 30 is the target of the notification. The relay count is the number of times the information has been relayed by the relay ground device 20 or other level crossing ground devices 10, as described later. The topic is an instruction to stop (EM) or to drive (CL) for the train 40, etc. For example, if the detection information indicates the presence of an obstacle, it can be an instruction to stop (EM), and if the detection information indicates the absence of an obstacle, it can be an instruction to drive (CL). The notification information 30 may be sent when the level crossing 5 has finished closing. Furthermore, if notification information 30 including "Stop Instruction (EM)" is to be sent, and then notification information 30 including "Drive Instruction (CL)" is to be sent as a topic, the level crossing ground device 10 may be configured to send notification information 30 including the topic "Drive Instruction (CL)" only if an external release instruction, such as a release instruction from a dispatcher, is input to the level crossing ground device 10.
[0025] The obstacle detection device 7 detects obstacles on the level crossing 5 and outputs detection information indicating their presence or absence. The obstacle detection method may be any of the following: optical, millimeter-wave, stereo camera, or image-based detection. The optical method involves installing a pair of light emitters and receivers and detecting obstacles based on whether or not the receiver receives the light signal emitted from the light emitters. The millimeter-wave method detects obstacles based on the time it takes for a transceiver to transmit millimeter waves and receive the reflected signal. The stereo camera method detects obstacles by measuring distance using two cameras, one on the left and one on the right. The image-based method detects obstacles by processing images captured by a camera.
[0026] The relay ground device 20 is positioned along the track 3 and relays the notification information 30 sent from the level crossing ground device 10. At this time, it updates the number of relays included in the received notification information 30 by adding "1" and then relays it. The relay ground device 20 is positioned so that the onboard equipment 42 of trains 40 located in the range from the level crossing 5 to the braking start point, which is a predetermined braking distance along the track 3, can continuously receive the notification information 30. More specifically, the relay ground device 20 is positioned so that the onboard equipment 42 can continuously receive the notification information 30 in that range either by receiving the notification information 30 directly from the level crossing ground device 10 or by receiving the notification information 30 via the relay ground device 20. In the example shown in Figure 1, the relay ground device 20 is positioned such that its wireless communication range 22 includes the area from the level crossing 5 along the track 3 to the braking start point, which is a predetermined braking distance away, and is not included in the wireless communication range 12 of the level crossing ground device 10, but is also included in the wireless communication range 12 of the level crossing ground device 10.
[0027] The relay ground device 20 receives notification information 30 transmitted from the level crossing ground device 10, or notification information 30 transmitted via relay from another relay ground device 20, and determines whether or not to relay the information by comparing the level crossing ID contained in the received notification information 30 with the stored level crossing IDs that require relaying. If the determination is positive, the relay ground device 20 transmits the received notification information 30 via relay using a wireless communication protocol that can be received by the onboard equipment 42 of the train 40. The level crossing IDs that require relaying are the level crossing IDs of the level crossings that the relay ground device 20 is responsible for relaying. If the wireless communication range of the relay ground device 20 includes the range to which it wants to transmit notification information 30 for a certain level crossing 5, then that level crossing 5 is designated as a relay target.
[0028] The onboard equipment 42 of train 40 controls the speed of its own train according to the topic contained in the received notification information 30. Specifically, when it receives notification information 30 containing the topic "Stop Instruction (EM)", it switches to an emergency stop pattern to stop before level crossing 5 and decelerates. At the same time, it stores the level crossing ID contained in the notification information 30 as the level crossing ID to stop at. Subsequently, when the onboard equipment 42 receives notification information 30 containing the topic "Drive Instruction (CL)", if the level crossing ID contained in the notification information 30 matches the level crossing ID stored as the level crossing to stop at, it cancels the emergency stop pattern and switches back to the original speed control pattern to resume running. Furthermore, if the onboard equipment 42 receives multiple notification information 30 with the same notification ID almost simultaneously (within a predetermined short period of time), it adopts the notification information 30 with the fewest relay counts.
[0029] Thus, the wireless devices of the level crossing ground device 10 and the relay ground device 20 in the level crossing obstacle warning system 1 can be composed of wireless devices that use the ISM band, which is one of the frequency bands that is generally open and does not require a license. For this reason, even if the transmission output allowed by the wireless device of the level crossing ground device 10 does not satisfy the communication distance equivalent to the braking distance required to stop the train 40 before the level crossing 5, the warning information 30 related to the level crossing 5 can be transmitted to the onboard device 42 of the train 40 via relay transmission by the relay ground device 20, thereby stopping the train 40 before the level crossing 5. Furthermore, by limiting the information to be included in the warning information 30 to what is necessary and sufficient to stop the train before the level crossing 5, such as instructions (topics) for the train 40 and the level crossing ID, which is the identification information of the level crossing 5, the amount of data in the warning information 30 can be reduced so as not to occupy the communication band used and not interfere with other wireless communications. This also allows the warning information 30 to be transmitted quickly and enables stable operation of the wireless device.
[0030] Figure 3 is a block diagram showing the functional configuration of the level crossing obstacle warning system 1. As shown in Figure 3, the level crossing obstacle warning system 1 comprises a level crossing ground device 10 and a relay ground device 20.
[0031] The level crossing ground device 10 comprises a processing unit 100, a wireless communication unit 200, and a storage unit 300, and is configured as a type of computer system.
[0032] The processing unit 100 is implemented by an arithmetic unit such as a CPU (Central Processing Unit), and based on programs and data stored in the storage unit 300, it issues instructions and transfers data to each part that constitutes the level crossing ground device 10, thereby performing overall control of the level crossing ground device 10. In addition, the processing unit 100 has a notification information transmission unit 102 and a relay unit 104 as functional units according to this embodiment. However, these functional units can also be configured as independent arithmetic circuits using ASICs (Application Specific Integrated Circuits) or FPGAs (Field Programmable Gate Arrays), etc.
[0033] The notification information transmission unit 102 transmits notification information 30 based on detection information from the obstacle detection device 7 installed at the level crossing 5 to be notified, using a wireless communication protocol that can be received by the onboard equipment 42 of the train 40. It also transmits the notification information 30 along with instructions for the train 40 based on the detection information and the level crossing ID (stored as level crossing ID 304 in the storage unit 300), which is the level crossing identification information for the level crossing 5 related to the level crossing ground equipment 10 (see Figure 2). The instructions for the train 40 are, for example, “stop instruction (EM)” or “drive instruction (CL)”.
[0034] The relay unit 104 determines whether or not to relay the level crossing ID, which is level crossing identification information included in the notification information 30 received by the wireless communication unit 200, by comparing it with the level crossing ID that requires relaying, which is level crossing identification information. If the determination is positive, the relay unit 104 transmits the received notification information 30 using a predetermined wireless communication protocol. The level crossing IDs that require relaying are stored as the level crossing ID list 306.
[0035] The wireless communication unit 200 is a functional unit that performs actual communication based on the control of the processing unit 100. It is implemented using a wireless device and performs wireless communication with external devices such as the relay ground device 20, other level crossing ground devices 10, and on-board devices 42. For example, it receives notification information 30 transmitted from the relay ground device 20 and other level crossing ground devices 10.
[0036] The storage unit 300 is implemented using a storage device such as a hard disk, ROM (Read Only Memory), or RAM (Random Access Memory), and stores programs and data for the processing unit 100 to comprehensively control the level crossing ground device 10. The storage unit 300 is also used as a workspace for the processing unit 100, and temporarily stores calculation results executed by the processing unit 100 according to various programs, as well as input data via the wireless communication unit 200. In this embodiment, the storage unit 300 stores the level crossing ID 304 of the level crossing to be notified (target level crossing) 5, the list of level crossings requiring relay IDs 306, the adopted topic list 308 which is a list of topics to be adopted as notification information addressed to the device, the notification log 310, and the relay log 312.
[0037] The notification log 310 contains data related to the notification information 30 transmitted by the notification information transmission unit 102, including the notification ID, content, and transmission date and time for each notification information 30. The relay log 312 contains data related to the notification information 30 relayed by the relay unit 104, including the notification ID, content, and transmission date and time for each notification information 30.
[0038] In this embodiment, the level crossing ground device 10 is a device that has some of the functions of the relay ground device 20 (the function of relaying and transmitting notification information 30), but it is also possible to configure it as a device that does not have the function of relaying and transmitting.
[0039] Next, the relay ground device 20 comprises a processing unit 400, a wireless communication unit 500, and a storage unit 600, and is configured as a type of computer system.
[0040] The processing unit 400 has a relay unit 404 which has the same function as the relay unit 104 of the level crossing ground device 10.
[0041] The wireless communication unit 500 is implemented using wireless equipment and communicates wirelessly with external devices such as the level crossing ground equipment 10, other relay ground equipment 20, and on-board equipment 42.
[0042] The memory unit 600 stores the device ID 602, which is the ID of the device itself, the list of level crossings requiring relay IDs 606, the list of adopted topics 608, and the relay log 612. The list of level crossings requiring relay IDs 606 is the same data as the list of level crossings requiring relay IDs 306 stored in the memory unit 300 of the level crossing ground device 10. The list of adopted topics 608 is the same data as the list of adopted topics 308 stored in the memory unit 300 of the level crossing ground device 10. The relay log 612 is the same data as the relay log 312 stored in the memory unit 300 of the level crossing ground device 10.
[0043] Next, five specific embodiments (Embodiments 1 to 5) of the level crossing obstacle warning system 1 will be described. In each embodiment, the functional configuration of the level crossing ground device 10 and the relay ground device 20 is the same as the configuration described with reference to Figure 3. However, for the convenience of explaining the embodiments separately, different reference numerals are used.
[0044] <First Example> Figure 4 is a diagram illustrating the level crossing obstacle warning system 1A, which is the first embodiment. The graph shown at the bottom of Figure 4 is a speed control pattern that the onboard device 42 uses as a reference when controlling the running speed of the train 40, with the horizontal axis representing position and the vertical axis representing speed. In the example of Figure 4, the level crossing obstacle warning system 1A includes a level crossing ground device 10A that designates level crossing 5A as the level crossing to be notified (target level crossing), and a relay ground device 20A located near the braking start point of level crossing 5A. The area along the track 3 from level crossing 5A to the braking start point is covered by the wireless communication range of the level crossing ground device 10A and the relay ground device 20A. The relay ground device 20A is also installed within the wireless communication range of the level crossing ground device 10A. Therefore, the onboard device 42 of the train 40 located between the braking start point and level crossing 5A can continuously receive the warning information 30 transmitted by the level crossing ground device 10A. The level crossing ground device 10A transmits notification information 30 based on detection information from the obstacle detection device (not shown) of level crossing 5A, which includes the level crossing ID of level crossing 5A, "0001". The relay ground device 20A also stores the level crossing ID of level crossing 5A, "0001", as the level crossing ID requiring relay.
[0045] The operation of the level crossing obstacle warning system 1A will be explained. Train 40 is approaching level crossing 5A with the direction of travel to the right. Assume that when train 40 is traveling at position L1, just before reaching the braking start point of level crossing 5A, the level crossing ground device 10A sends out warning information 30a-1, which includes "Stop Instruction (EM)" as a topic. The transmitted warning information 30a-1 is received by the relay ground device 20A. The relay ground device 20A determines that the level crossing ID included in the received warning information 30a-1 matches a stored level crossing ID that requires relaying, and therefore relays the warning information 30a-1. At this point, train 40 is not within the wireless communication range of the level crossing ground device 10A, but only within the wireless communication range of the relay ground device 20A. Therefore, the warning information 30a-1 relayed by the relay ground device 20A is received by the onboard device 42 of train 40. The onboard device 42 switches to a speed control pattern for emergency stopping (emergency stop pattern) in accordance with the topic "stop instruction (EM)" included in the received broadcast information 30a-1, and decelerates the train 40 according to this emergency stop pattern.
[0046] Suppose that, while train 40 is traveling at position L2 before reaching level crossing 5A, the level crossing ground device 10A transmits notification information 30a-2, which includes the topic "Operation Instruction (CL)". At this point, the train's position L2 is within the wireless communication range of the level crossing ground device 10A. Therefore, the transmitted notification information 30a-2 is received by the onboard device 42 of train 40 without being relayed by the relay ground device 20A. The onboard device 42, in accordance with the topic "Operation Instruction (CL)" included in the received notification information 30a-2, erases the current emergency stop pattern, switches back to the original speed control pattern, and resumes operation according to this speed control pattern to pass through level crossing 5A.
[0047] <Second Example> Depending on the timing of the transmission of notification information 30 by the level crossing ground device 10 and the position of the train 40 at that time, there may be cases in which the train 40 decelerates according to the emergency stop pattern but passes through the level crossing 5. The second embodiment is an example of a level crossing obstacle notification system 1B in which a relay ground device 20 is also placed in front of (behind) the level crossing 5 so that the train 40 that has passed the level crossing 5 and stopped can receive notification information 30 including "operation instruction (CL)" as a topic and resume operation.
[0048] Figure 5 is a diagram illustrating a second embodiment of the level crossing obstacle warning system 1B. Similar to Figure 4, the lower part of Figure 5 shows the speed control pattern that the onboard device 42 uses as a reference when controlling the running speed of the train 40. In the example of Figure 5, the level crossing obstacle warning system 1B comprises a level crossing ground device 10B that designates level crossing 5B as the level crossing to be notified (target level crossing), and a relay ground device 20B positioned in front of (behind) level crossing 5B. The relay ground device 20B is positioned within the wireless communication range of the level crossing ground device 10B. As a result, even if the train 40 applies the brakes according to the emergency stop pattern but stops after passing level crossing 5B, the onboard device 42 of the train 40 can receive warning information 30 from the level crossing ground device 10B or the relay ground device 20B.
[0049] The relay ground device 20B stores "0001," which is the level crossing ID of level crossing 5B, as the level crossing ID requiring relay. Furthermore, the relay ground device 20B located in front of (behind) level crossing 5B is configured to relay only notification information 30 that includes "operation instruction (CL)" as a topic (i.e., notification information 30 that includes "stop instruction (EM)" as a topic is not relayed). Therefore, the relay ground device 20B located in front of (behind) level crossing 5B may store the level crossing ID requiring relay in combination with "operation instruction (CL)," which is the topic to be relayed.
[0050] Let's explain the operation of the level crossing obstacle warning system 1B. Assume that when train 40 is traveling at position L3 before reaching level crossing 5B, the level crossing ground device 10B sends out notification information 30b-1, which includes the topic "Stop Instruction (EM)". At this point, the position L3 of train 40 is within the wireless communication range of the level crossing ground device 10B, so the onboard device 42 of train 40 receives the notification information 30b-1 sent from the level crossing ground device 10B. Then, following the topic "Stop Instruction (EM)" included in the received notification information 30b-1, the train decelerates according to the emergency stop pattern, but stops at position L4, which is well past level crossing 5B.
[0051] Suppose that after train 40 has stopped, relay ground device 20B transmits notification information 30b-2, which includes the topic "Operation Instruction (CL)". The transmitted notification information 30b-2 is received and relayed by relay ground device 20B. At that time, the position L4 of train 40 is outside the wireless communication range of the level crossing ground device 10B, but within the wireless communication range of relay ground device 20B. Therefore, the onboard equipment 42 of train 40 receives the notification information 30b-2 relayed by relay ground device 20B. Then, in accordance with the topic "Operation Instruction (CL)" included in the received notification information 30b-2, it returns to a speed control pattern that erases the emergency stop pattern and resumes operation, and resumes operation.
[0052] <Third Example> In the first and second embodiments, examples were shown in which a maximum of one relay ground device 20 is placed in each direction (forward and backward) along the track 3 as viewed from the level crossing ground device 10. However, there are also cases in which multiple relay ground devices 20 are placed in each direction along the track 3 as viewed from the level crossing ground device 10. In such cases, the level crossing requiring relay ID stored in each relay ground device 20 is set to reduce the number of relays of the notification information 30, taking into account the wireless communication range of the level crossing ground device 10 and each relay ground device 20. Specifically, this case applies when multiple relay ground devices 20 are placed in the same direction along the track 3 as viewed from the level crossing ground device 10, and all of these multiple relay ground devices 20 are located within the wireless communication range of the level crossing ground device 10. In this case, only the relay ground device 20 located furthest from the level crossing ground device 10 along the track 3 stores the level crossing ID of the target level crossing of the level crossing ground device 10 as the level crossing requiring relay ID.
[0053] Figure 6 illustrates a third embodiment of the level crossing obstacle notification system 1C. Similar to Figure 4, the lower part of Figure 6 shows the speed control pattern that the onboard device 42 uses as a reference when controlling the running speed of the train 40. In the example of Figure 6, the level crossing obstacle notification system 1C comprises a level crossing ground device 10C that designates level crossing 5C as the level crossing to be notified (target level crossing), and relay ground devices 20C-1 and 20C-2 positioned in front of level crossing 5C as seen from the train 40. Both relay ground devices 20C-1 and 20C-2 are within the wireless communication range of the level crossing ground device 10C and can receive notification information transmitted by the level crossing ground device 10C. However, in the third embodiment, only the relay ground device 20C-2, which is further from the level crossing ground device 10C, stores the level crossing ID of level crossing 5C, which is the target level crossing of the level crossing ground device 10C, as the level crossing ID requiring relay. Therefore, relay ground device 20C-1 does not relay and transmit notification information from level crossing ground device 10C. Only relay ground device 20C-2 relays and transmits notification information from level crossing ground device 10C.
[0054] Let's explain the operation of the level crossing obstacle warning system 1C in detail. Assume that when train 40 is traveling at position L5, before reaching the braking start point of level crossing 5C, the level crossing ground device 10C sends out warning information 30c-1, which includes the topic "Stop Instruction (EM)". The sent warning information 30c-1 is received and relayed by the relay ground device 20C-2. The relay ground device 20C-1 also receives the warning information 30c-1, but since the level crossing ID included in the warning information 30c-1 does not match the stored level crossing IDs that require relaying, it does not relay the warning information 30c-1. Then, the onboard device 42 of train 40 receives the warning information 30c-1 sent from the relay ground device 20C-2, switches to an emergency stop pattern according to the topic "Stop Instruction (EM)" included in the warning information 30c-1, and decelerates according to this emergency stop pattern.
[0055] Suppose that, while train 40 is traveling at position L6 just before level crossing 5C, the level crossing ground device 10C transmits notification information 30c-2, which includes the topic "operation instruction (CL)". At this point, the position L6 of train 40 is within the wireless communication range of the level crossing ground device 10C. Therefore, the onboard equipment 42 of train 40 can receive the notification information 30c-2 transmitted from the level crossing ground device 10C. The onboard equipment 42, in accordance with the topic "operation instruction (CL)" included in the received notification information 30c-2, erases the current emergency stop pattern, switches back to the original speed control pattern, and resumes operation according to this speed control pattern to pass through level crossing 5C.
[0056] <Fourth Example> In some railway lines, there are locations where multiple level crossings are located close together. Since the level crossing ground device 10 also has the function of a relay ground device 20 (a function to relay and transmit notification information 30), in such locations, the level crossing ground device 10 performs the relay function, eliminating the need to separately install a relay ground device 20.
[0057] Figure 7 illustrates a fourth embodiment of the level crossing obstacle notification system 1D. Similar to Figure 4, the lower part of Figure 7 shows the speed control pattern that the onboard device 42 uses as a reference when controlling the running speed of the train 40. In the example of Figure 7, the level crossing obstacle notification system 1D includes two level crossing ground devices 10D-1 and 10D-2, each designating two adjacent level crossings 5D-1 and 5D-2 as the level crossings to be notified (target level crossings). The level crossing ground devices 10D-1 and 10D-2 each transmit notification information 30 based on detection information from the obstacle detection device (not shown) of the target level crossing. The level crossing ground devices 10D-1 and 10D-2 are positioned so that they are within the wireless communication range of the other level crossing ground device 10D-1 and 10D-2. Furthermore, in order to implement the function of relaying notification information 30 to the other level crossing ground device 10D-1, 10D-2, each level crossing ground device 10D-1, 10D-2 stores the level crossing ID of the target level crossing of the other level crossing ground device 10D-1, 10D-2 as the level crossing ID requiring relay.
[0058] The operation of the level crossing obstacle warning system 1D will be explained. Assume that when train 40 is traveling at position L7, just before reaching the braking start point of level crossing 5D-1, the level crossing ground device 10D-1 sends out warning information 30d-1, which includes the topic "Stop Instruction (EM)". The sent warning information 30d-1 is received and relayed by the level crossing ground device 10D-2 and received by the onboard device 42 of train 40. The onboard device 42 of train 40 switches to an emergency stop pattern and decelerates train 40 in accordance with the topic "Stop Instruction (EM)" included in the received warning information 30d-1.
[0059] Suppose that, while train 40 is traveling at position L8 before reaching level crossing 5D-1, the level crossing ground device 10D-1 transmits notification information 30d-2, which includes the topic "operation instruction (CL)". At that time, position L8 of train 40 is within the wireless communication range of the level crossing ground device 10D-1. Therefore, the onboard equipment 42 of train 40 receives the notification information 30d-2 transmitted from the level crossing ground device 10D-1 and controls the train to return to the original train control pattern in accordance with the topic "operation instruction (CL)" included in the notification information 30d-2, and passes through level crossing 5D-1.
[0060] <Example 5> The first to fourth embodiments describe cases where the train 40 is approaching from only one direction. The fifth embodiment describes cases where the train 40 is approaching from both directions (upbound and downbound).
[0061] Figure 8 is a diagram illustrating the fifth embodiment of the level crossing obstacle warning system 1E. Although Figure 8 shows an example of a double track, the same applies when trains run in both directions on a single track. In the example shown in Figure 8, the level crossing obstacle warning system 1E comprises level crossing ground devices 10E-1 and 10E-2, which designate level crossings 5E-1 and 5E-2 as the level crossings to be notified (target level crossings), and relay ground devices 20E-1 to 20E-3. The level crossing ground devices 10E-1 and 10E-2 include train approach direction information indicating the uphill direction in the warning information 30 sent to trains 40 whose approach direction to the level crossings to be notified (target level crossings). Furthermore, the level crossing ground devices 10E-1 and 10E-2 include information indicating the direction of approach of the train (downbound) in the notification information 30 sent to the train 40 whose approaching direction toward the target level crossing is in the downbound direction. The level crossing 5 is controlled to close in response to the approach of the train 40. The level crossing ground devices 10E-1 and 10E-2 are configured to obtain the direction of approach of the train 40 from a level crossing control device (not shown), etc.
[0062] The relay ground devices 20E-1 and 20E-2 store the level crossing ID of level crossing 5, which is located in the direction from the relay ground devices 20E-1 and 20E-2 toward level crossing 5, as the level crossing ID requiring relay. If the direction of approach information of the train included in the received notification information 30 is different from the direction from the relay ground devices 20E-1 and 20E-2 toward level crossing 5 relating to the notification information 30, they determine that relaying of the notification information 30 is unnecessary.
[0063] Specifically, the relay ground devices 20E-1 and 20E-2 store the crossing ID of crossing 5 that is in the uphill direction from the relay ground devices 20E-1 and 20E-2 as a crossing ID requiring relay, associating it with the direction "uphill". Also, the relay ground devices 20E-1 and 20E-2 store the crossing ID of crossing 5 that is in the downhill direction from the relay ground devices 20E-1 and 20E-2 as a crossing ID requiring relay, associating it with the direction "downhill". If the combination of crossing ID and train approach direction information contained in the received notification information 30 does not match the stored combination of crossing ID and direction requiring relay, the relay ground devices 20E-1 and 20E-2 determine that relaying of the received notification information 30 is unnecessary and do not transmit it. Only if they match do the notification information 30 be transmitted via relay. Therefore, the notification information 30 transmitted by the level crossing ground devices 10E-1 and 10E-2 will be relayed and transmitted only in the direction toward the train 40 approaching the target level crossing.
[0064] In the example shown in Figure 8, the relay ground device 20E-1 stores the crossing ID "0001" of crossing 5E-1, which is located in the down direction, as a crossing ID requiring relay, associating it with the direction "down" towards crossing 5E-1. The relay ground device 20E-2 stores the crossing ID "0001" of crossing 5E-1, which is located in the up direction, as a crossing ID requiring relay, associating it with the direction "up" towards crossing 5E-1. In addition, the relay ground device 20E-2 stores the crossing ID "0002" of crossing 5E-2, which is located in the down direction, as a crossing ID requiring relay, associating it with the direction "down" towards crossing 5E-2.
[0065] The operation of the level crossing obstacle warning system 1E will be explained. When train 40 is traveling at position L9, approaching the braking start point of level crossing 5E-1, the level crossing ground device 10E-1, which targets level crossing 5E-1, sends out warning information 30e, which includes the train approach direction information "upward direction", as warning information 30 for train 40 traveling in the upward direction. This warning information 30e is received by the relay ground device 20E-2. The relay ground device 20E-2 stores the combination of the level crossing ID "0001" and the train approach direction information "upward direction" contained in the received warning information 30e as stored information. Since the combination of relay crossing ID and direction matches, the notification information 30e is relayed. The relayed notification information 30e is received by the onboard equipment 42 of train 40. In addition, the notification information 30e transmitted by the level crossing ground equipment 10E-1 is also received by the relay ground equipment 20E-1, but the train approach direction information "upward direction" included in the notification information 30e does not match the direction "downward" that the relay ground equipment 20E-1 stores in association with the relay crossing ID, so it is determined that relaying is unnecessary and the notification is not relayed.
[0066] Furthermore, the level crossing ground device 10 and the relay ground device 20 may be configured and arranged as separate devices for the direction of train approach (upbound and downbound). Specifically, a level crossing ground device 10 dedicated to the upbound direction and a level crossing ground device 10 dedicated to the downbound direction may be arranged. The level crossing ground device 10 dedicated to the upbound direction is a level crossing ground device 10 that transmits notification information 30 (notification information including train approach direction information "upbound direction") to trains 40 whose approach direction to the target level crossing is upbound. The level crossing ground device 10 dedicated to the downbound direction is a level crossing ground device that transmits notification information 30 (notification information including train approach direction information "downbound direction") to trains 40 whose approach direction to the target level crossing is downbound. Similarly, the relay ground device 20 may also be configured as a relay ground device 20 dedicated to the upbound direction and a relay ground device 20 dedicated to the downbound direction. A relay ground device 20 exclusively for the uphill direction is a relay ground device 20 that stores the level crossing ID of level crossing 5 located in the uphill direction from the relay ground device 20 as the required level crossing ID. A relay ground device 20 exclusively for the downhill direction is a relay ground device 20 that stores the level crossing ID of level crossing 5 located in the downhill direction from the relay ground device 20 as the required level crossing ID.
[0067] [Effects and Effects] According to this embodiment, even when using a generally open frequency band, a system can be realized to transmit information regarding the obstruction status of the level crossing 5 from the ground to the train via wireless communication. In other words, the level crossing ground device 10 transmits notification information 30 based on the obstacle detection information at the level crossing 5 by the obstacle detection device 7 using a wireless communication protocol that can be received by the on-board device 42 of the train 40. This notification information 30 is also relayed and transmitted by the relay ground device 20 that receives the notification information 30. The level crossing ground device 10 transmits the notification information 30 regardless of the presence of the train 40, but by limiting the information transmitted to information necessary for train stopping control related to the state of the level crossing, it is possible to transmit the notification information quickly without unnecessarily occupying the wireless communication band or interfering with other wireless communications. Therefore, even when using the ISM band, which is one of the generally open frequency bands, as the wireless communication, it is possible to quickly transmit the notification information 30 to the on-board device 42. Furthermore, although the distance from level crossing 5 to the braking start point of said level crossing 5 is a relatively long distance, for example, about 600m, it is possible to transmit notification information 30 regarding said level crossing 5 to the onboard equipment 42 of train 40 that has not yet reached the braking start point, via relay transmission by the relay ground equipment 20.
[0068] Furthermore, by storing the level crossing ID, which is the level crossing identification information of the level crossing 5 that should relay the notification information 30, in the relay ground device 20 as the level crossing ID requiring relay, it becomes unnecessary to search for a communication path from the level crossing ground device 10 to the onboard device 42 of the train 40. This reduces the communication involved in searching for a communication path, and makes it possible to reduce the amount of data transmitted wirelessly across the entire system.
[0069] [Differentiation] It should be noted that the applicable embodiments of the present invention are not limited to those described above, and can be modified as appropriate without departing from the spirit of the invention.
[0070] (A) Communication from the on-board device 42 In the above embodiment, one-way communication was used from the level crossing ground device 10 to the on-board device 42, but communication from the on-board device 42 to the level crossing ground device 10 may also be performed. Specifically, for example, when the on-board device 42 wants to acquire the obstruction status of the level crossing 5 ahead, it can send out notification information 30 including the topic "Transmission Instruction (RQ)". In this case, the on-board device 42 sends out the notification information 30 including its own device ID. When the relay ground device 20 receives this notification information 30, it determines, for example, from the device ID that the source is the on-board device 42, and relays the notification information 30 including the topic "Transmission Instruction (RQ)". When the level crossing ground device 10 receives this notification information 30, it sends back the latest notification information 30 for the level crossing (target level crossing) 5 that is the target of the notification. From this point onward, the relay ground device 20 relays the latest broadcast information 30 that has been sent back, and the on-board device 42 receives it.
[0071] (B) Train direction information Furthermore, in the fifth embodiment, instead of including train approach direction information in the notification information 30, the difference in the carrier frequency of the notification information 30 may be used as the train approach direction.
[0072] (C) Relay Ground Equipment 20 On lines where Automatic Train Control (ATC) or Automatic Train Stop (ATS) is installed, the relay ground device 20 may be replaced with a system that transmits the notification information 30 to the on-board device 42 via a track circuit. Alternatively, on lines where a point-control type ATS is installed, a ground beacon may be installed before the braking start point of the level crossing 5, and the notification information 30, including the topic "Stop Instruction (EM)," may be transmitted to the on-board device 42 via this ground beacon.
[0073] (D) Relay transmission of the same broadcast information 30 The relay ground device 20 may, when it receives notification information 30 with the same notification ID, determine the notification information 30 to be relayed that has the fewest relay counts included in the notification information 30, and whose level crossing ID, which is the level crossing identification information included in the notification information 30, matches the level crossing ID that is the level crossing identification information that requires relaying, and then update the relay count included in the notification information 30 before relaying the notification information 30.
[0074] In other words, the relay ground device 20 relays notification information 30 that includes a level crossing ID that matches the stored level crossing ID requiring relay. However, since there are multiple level crossing ground devices 10 and relay ground devices 20, multiple notifications 30 with the same notification ID may be received almost simultaneously (i.e., within a predetermined short period of time) from each of them, either by sending out or relaying the information. In such cases, only the notification information 30 with the same notification ID received within the predetermined short period of time that has been relayed the fewest times is relayed. By doing so, it is possible to reduce the transmission errors of notification information and to reduce the overall communication volume of the level crossing obstacle notification system 1.
[0075] (E) Level crossing obstruction detection information Furthermore, while the notification information 30 is based on detection information of an obstruction at the level crossing 5, the detection information may be other than that detected by the obstacle detection device 7 installed at the level crossing 5. For example, detection information that indicates an obstruction detection device (emergency button) installed at the level crossing 5 has been operated (pressed), detection information that indicates a malfunction of the level crossing barrier due to a failure of the barrier machine, detection information that indicates a break in the barrier arm, or any other detection information that indicates an obstruction when the train 40 passes through the level crossing 5 may be used. In addition, the detection content (such as obstacle detection or emergency button operation) may also be included in the notification information 30. [Explanation of Symbols]
[0076] 1 (1A~1E)... Level crossing obstacle warning system 10 (10A~10E)... Level crossing ground equipment 12… Wireless communication range 100... Processing Unit 102... Hochi Information Transmission Department 104... Relay section 200... Wireless Communication Department 300...Storage section 302...Device ID 304...Target level crossing ID 306... Relay crossing ID list 308…Recruitment Topics List 310... Hochi Log 312... Relay Log 20 (20A~20E)... Relay Ground Equipment 22… Wireless communication range 400... Processing Unit 404... Relay Unit 500... Wireless Communication Department 600...Storage section 602…Device ID 606... Relay crossing ID list 608…Recruitment Topics List 612… Relay Log 30 (30a~30e)... Hochi Information 3…orbit 5 (5A~5E)... Level crossing 7… Obstacle detection device 40... train 42...Onboard equipment
Claims
1. A ground device that relays notification information based on detection information of a level crossing obstruction at a level crossing, which is transmitted at each level crossing using a wireless communication protocol that can be received by an onboard device of a train, The aforementioned notification information includes, in association with, information regarding instructions to the train based on the detection information and level crossing identification information for the level crossing. A storage means for storing the level crossing identification information of the level crossing to which the notification information is to be relayed as level crossing identification information requiring relay, Receiving means for receiving the aforementioned notification information, A relay means that determines whether or not to relay the level crossing identification information contained in the received notification information by comparing it with the level crossing identification information requiring relay, and if the determination is positive, relays the received notification information using the wireless communication protocol. Ground equipment equipped with the following features.
2. The storage means stores the level crossing identification information of level crossings in a predetermined direction from the ground device as level crossing identification information requiring a relay. The ground device according to claim 1.
3. The notification information includes train approach direction information indicating an upward direction when the notification information is transmitted in an upward direction, and includes train approach direction information indicating a downward direction when the notification information is transmitted in a downward direction. The relay means determines that relaying the notification information is unnecessary if the train approach direction information included in the notification information received by the receiving means is different from the direction from the ground device toward the level crossing related to the notification information. The ground device according to claim 1 or 2.
4. The aforementioned notification information further includes an ID of the notification information and information indicating the number of relays to which the notification information was relayed. When the receiving means receives notification information with the same ID, the relay means determines the notification information to be relayed which has the fewest relay counts and whose level crossing identification information matches the level crossing identification information requiring relay, updates the relay counts included in the notification information, and then relays the notification information. The ground device according to any one of claims 1 to 3.
Citation Information
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