Random access channel (rach) response (rar) reception in an unlicensed radio frequency (rf) spectrum band
US-2024073955-A1 · Feb 29, 2024 · US
US10425250B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10425250-B2 |
| Application number | US-201515557785-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 18, 2015 |
| Priority date | Mar 19, 2015 |
| Publication date | Sep 24, 2019 |
| Grant date | Sep 24, 2019 |
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A transmission system of embodiments is a transmission system including a plurality of transmission stations connected together via a single transmission path. Each transmission station includes a sending controller, an obtaining unit, and a first storage. The obtaining unit is configured to obtain first information regarding sending or reception of a communication frame in synchronization with sending or reception of the communication frame. The first storage is configured to store the first information and second information indicating the date and time of obtaining the first information.
Opening claim text (preview).
What is claimed is: 1. A transmission system for controlling control or monitoring targets comprising: a plurality of transmission stations connected together via a single transmission path, each transmission station including: a processor that: sequentially obtains a sending permission subsequently after a synchronization frame sent by a predetermined transmission station of a plurality of transmission stations in a predetermined transmission period; sends a communication frame to other ones of the transmission stations when the transmission station itself obtains the sending permission; and obtains first information regarding sending or reception of a communication frame in synchronization with the sending or reception of the communication frame; and a first storage that stores the first information and second information indicating date and time of obtaining the first information; wherein the processor sends, to a first device in the transmission system, a first communication frame including the first and second information stored in the first storage during an extra time after completion of the sending of the communication frame by each transmission station in the transmission period when a value obtained by dividing the extra time by a communication time required for sending of the first communication frame to the first device is equal to or greater than one, sends the first communication frame to the first device. 2. The transmission system according to claim 1 , wherein the processor measures a first time as an interval of receiving the communication frame, when the first time exceeds a predetermined acceptable delay time takes such a state as reception of the communication frame, and obtains the first information. 3. The transmission system according to claim 1 , wherein the processor obtains a difference between previously-obtained first information and currently-obtained first information, and when there is no difference, detects that there is an abnormality in the sending or reception of the communication frame. 4. The transmission system according to claim 2 , wherein when the number of times that the first time exceeds the acceptable delay time exceeds the predetermined number of times, the processor detects that there is an abnormality in the sending or reception of the communication frame. 5. The transmission system according to claim 1 , wherein when the number of times that the first information is obtained in the transmission period is different from the total number of times that the transmission stations send the communication frame in the transmission period, the processor detects that there is an abnormality in the sending or reception of the communication frame. 6. The transmission system according to claim 1 , wherein when the value obtained by dividing the extra time by the communication time is less than one, the processor, using a transmission path physically different from the transmission path used for the sending or reception of the communication frame among the transmission stations, sends the first communication frame to the first device. 7. The transmission system according to claim 1 , wherein a processor included in the first device: arranges, in chronological order, the first information contained in the first communication frame according to the second information contained in the first communication frame received from each transmission station, and identifies, based on a first information arrangement result, an abnormality occurrence condition in the sending or reception of the communication frame. 8. The transmission system according to claim 7 , wherein the processor obtains a time required for transmission of the communication frame among the transmission stations based on the first information arrangement result, and identifies, using the obtained time, equipment through which the communication frame passes in the transmission among the transmission stations and a connection configuration of the transmission stations. 9. The transmission system according to claim 1 , wherein the first device includes a second storage that stores, in a ring buffer format, the first information for each transmission station, the first information corresponding to the predetermined number of cycles in the transmission period or the number of transmission stations in the transmission system. 10. The transmission system according to claim 1 , wherein the processor obtains the first information only in any of a case of sending the communication frame and a case of receiving the communication frame. 11. The transmission system according to claim 1 , wherein the processor obtains the first information only during the extra time. 12. A transmission station for controlling control or monitoring targets, comprising: a processor that; sequentially obtains a sending permission subsequently after a synchronization frame sent by a predetermined transmission station of a plurality of transmission stations in a predetermined transmission period; when the transmission station itself obtains the sending permission, sends a communication frame to other ones of the transmission stations, the transmission stations being connected together via a single transmission path; and obtains first information regarding sending or reception of the communication frame in synchronization with the sending or reception of the communication frame; and a first that stores the first information and second information indicating date and time of obtaining the first information wherein the processor sends, to a first device in the transmission system, a first communication frame including the first and second information stored in the first storage during an extra time after completion of the sending of the communication frame by each transmission station in the transmission period when a value obtained by dividing the extra time by a communication time required for sending of the first communication frame to the first device is equal to or greater than one, sends the first communication frame to the first device.
Synchronisation among time division multiple access [TDMA] nodes, e.g. time triggered protocol [TTP] (bus network with centralized control in which slots are of a TDMA packet structure H04L12/4035) · CPC title
Bus networks · CPC title
with centralised control, e.g. polling · CPC title
with random access, e.g. carrier-sense multiple-access with collision detection [CSMA-CD] · CPC title
Synchronising arrangements {(for television systems H04N5/04; bit-synchronisation H04L7/00)} · CPC title
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