JPH11175489A - Failure information system by alternative information - Google Patents

Failure information system by alternative information

Info

Publication number
JPH11175489A
JPH11175489A JP9346374A JP34637497A JPH11175489A JP H11175489 A JPH11175489 A JP H11175489A JP 9346374 A JP9346374 A JP 9346374A JP 34637497 A JP34637497 A JP 34637497A JP H11175489 A JPH11175489 A JP H11175489A
Authority
JP
Japan
Prior art keywords
computer
failure
computers
information
notification
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP9346374A
Other languages
Japanese (ja)
Inventor
Akitomo Yamada
晃智 山田
Kotaro Endo
浩太郎 遠藤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Toshiba Corp
Original Assignee
Toshiba Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Toshiba Corp filed Critical Toshiba Corp
Priority to JP9346374A priority Critical patent/JPH11175489A/en
Publication of JPH11175489A publication Critical patent/JPH11175489A/en
Pending legal-status Critical Current

Links

Abstract

PROBLEM TO BE SOLVED: To acquire failure information from other communication paths even if a certain communication path is disenabled in communication by allowing a computer which receives the failure information to perform simultaneous broadcast communication to the other computers connected to the self-computer through a communication path thereby giving an alternative information. SOLUTION: Although a computer 1 gives information (simultaneous broadcast communication) of a failure to computers 2 to 4, when a communication 17 that connects the computer 1 and the computer 4 is currently disenabled in communication, the information is not given to the computer 4. The other computers other than the computer 1 receives failure information. The computers other than the computer 1 gives the failure informs (simultaneous broadcast communication) to the other computers by failure informing parts B 15. However, because the failure information is not given, the computer does not send the information to the other computers. Then, in such a case, the computer 2 sends the failure information to the computers 3 and 4, and the computer 3 sends the failure information to the computers 2 and 4. As a result of this, the computers 2 to 4 receive the failure information. Thus, the failure information is alternatively given through the other communicaters 2 and 3.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】この発明は、HA(High Ava
ilability )システムにおける迂回通知による障害通知
方式に関する。
TECHNICAL FIELD The present invention relates to an HA (High Ava
ilability) The present invention relates to a failure notification method using a bypass notification in a system.

【0002】[0002]

【従来の技術】複数の計算機を接続してシステムを構成
し、ある計算機に障害が発生した場合、その計算機が実
行すべきタスクを他の計算機に振り分けることにより、
動作を継続実行させることのできるHAシステムが知ら
れている。
2. Description of the Related Art A system is constructed by connecting a plurality of computers, and when a failure occurs in one computer, tasks to be executed by the computer are distributed to other computers.
An HA system capable of continuously performing an operation is known.

【0003】例えば、図10に示すように、従来のHA
システムでは、計算機間を接続し、障害が発生すると、
障害が発生した計算機に直接接続されている他の計算機
に通知することが知られている。
[0003] For example, as shown in FIG.
The system connects the computers and when a failure occurs,
It is known to notify another computer directly connected to a computer in which a failure has occurred.

【0004】[0004]

【発明が解決しようとする課題】計算機間の通信用ケー
ブルが抜けるなど何らかの原因で通信路が通信不能にな
った場合、その通信路の両端の計算機は互いに相手側の
障害を知ることができないという問題がある。
If a communication path becomes uncommunicable for some reason, such as a cable for communication between computers being disconnected, computers at both ends of the communication path cannot know each other's fault. There's a problem.

【0005】この発明は上記実状に鑑みなされたもの
で、3台以上の計算機と計算機間の通信路を用いて迂回
通知を行うことにより信頼性の高い迂回通知による障害
通知方式を提供することを目的とする。
SUMMARY OF THE INVENTION The present invention has been made in view of the above situation, and provides a highly reliable failure notification system by performing detour notification using three or more computers and a communication path between the computers. Aim.

【0006】[0006]

【課題を解決するための手段】上記目的を達成するため
に、この発明の第1の観点によれば、複数の計算機が通
信路を介して接続されたネットワークシステムにおい
て、前記各計算機は自計算機内の障害を検出する障害検
出手段と;自計算機の障害を前記通信路を介して他の計
算機へ通知する障害通知手段と;他計算機からの障害通
知を受け取る障害受け取り手段と;受け取った障害通知
を他計算機へ通知する手段とを備え、前記複数の計算機
のいずれかに障害が発生したことを前記障害検出手段に
より検出し、前記通知手段により前記通信路を介して接
続された他の複数の計算機に障害通知を一斉同報し、前
記障害受け取り手段により前記障害通知を受け取った計
算機は、それぞれ他計算機への通知手段によりそれぞれ
自計算機と通信路を介して接続された他計算機に一斉同
報することにより迂回通知を行う障害通知方式とで構成
されることを特徴とする。
To achieve the above object, according to a first aspect of the present invention, in a network system in which a plurality of computers are connected via a communication path, each of the computers includes its own computer. Fault detecting means for detecting a fault in the computer; fault notifying means for notifying a fault of the own computer to another computer via the communication path; fault receiving means for receiving a fault notification from another computer; Means for notifying another computer that the failure has occurred in any of the plurality of computers by the failure detection means, and the other plurality of computers connected via the communication path by the notification means. The computers that simultaneously broadcast the failure notification to the computer and receive the failure notification by the failure receiving unit communicate with their own computers by the notification unit to the other computers. Characterized in that it is constituted by a fault notification method of performing bypass notification by broadcast simultaneously connected another computer with.

【0007】この発明の第2の観点によれば、前記各計
算機は、自計算機が一斉同報した障害通知を記憶する手
段を有し、他計算機から受け取った障害通知が、自計算
機が一斉同報した障害通知と同じである場合、前記受け
取った障害通知を他計算機へ一斉同報しない手段をさら
に有することを特徴とする。
According to a second aspect of the present invention, each of the computers has means for storing a failure notification broadcasted by its own computer, and the failure notification received from another computer is simultaneously broadcasted by its own computer. If the received failure notification is the same as the reported failure notification, the received failure notification is further provided with means for not simultaneously broadcasting the received failure notification to another computer.

【0008】この発明によれば、各計算機は自計算機に
障害が発生した場合、他計算機にその障害情報を一斉同
報し、障害情報を受け取った他計算機はその情報をさら
に、自己の計算機に通信路を介して接続された他計算機
に一斉同報する。このため、各計算機は障害が発生した
計算機からの障害情報の直接通知の他に、他計算機から
の迂回通知により障害情報が通知されるため、ある通信
路が通信不能になった場合でも、他の通信路を介して障
害情報を受け取ることができる。このため、信頼性の高
い障害通知方式を提供することができる。
According to the present invention, when a failure occurs in the own computer, each computer broadcasts the failure information to other computers at the same time, and the other computer receiving the failure information further transmits the information to its own computer. Broadcast to other computers connected via the communication path. For this reason, each computer is notified of the failure information by a detour notification from another computer in addition to the direct notification of the failure information from the computer in which the failure has occurred. Can receive the failure information via the communication path. For this reason, a highly reliable failure notification system can be provided.

【0009】[0009]

【発明の実施の形態】以下図面を参照して本発明の実施
形態を説明する。図1はこの発明の障害通知方式が適用
されるHA(High Availability) システムの機能ブロッ
ク図である。図1に示すHAシステムは例示として4台
の計算機1、3、5、7から構成されるが、任意の台数
で構成可能である。各計算機1、3、5、7は自計算機
内の障害を検出する検出部9と、自計算機の障害を他計
算機に通知する障害通知部A11と、他計算機の障害を
受け取る障害受け取り部13と、受け取った障害情報を
他の計算機へ通知する通知部B15を有する。各計算機
13、5、7はそれぞれ他計算機と通信路17を介して
接続される。
Embodiments of the present invention will be described below with reference to the drawings. FIG. 1 is a functional block diagram of an HA (High Availability) system to which the failure notification system of the present invention is applied. The HA system shown in FIG. 1 is constituted by four computers 1, 3, 5, and 7 as an example, but can be constituted by an arbitrary number. Each of the computers 1, 3, 5, and 7 includes a detecting unit 9 for detecting a fault in the own computer, a fault notifying unit A11 for notifying the fault of the own computer to another computer, and a fault receiving unit 13 for receiving a fault of the other computer. And a notifying unit B15 for notifying the received fault information to another computer. Each of the computers 13, 5, and 7 is connected to another computer via the communication path 17.

【0010】図2乃至図5はこの発明の障害通知方式の
動作を示すフローチャートおよび概念図である。以下、
図1乃至図5を参照してこの発明の障害通知方式の動作
について説明する。今、図2のステップS1において、
計算機1に障害が発生したとする。この障害はステップ
S3において、計算機1の障害検出部9により障害が検
出される。この状態において、図3に示すように計算機
1と計算機4とを接続する通信路17が通信不能状態で
あったとする。図2のステップS5において、計算機1
は障害通知部A11により、直接接続されている計算機
に障害を通知する。すなわち、図4に示すように、計算
機1は計算機2、計算機3、計算機4に障害を通知(一
斉同報)するが、今計算機1と計算機4とを接続する通
信路17が通信不能のため、この障害通知は計算機2と
計算機3にのみ通知され、計算機4には通知されない。
ステップS7において、計算機1以外の計算機は障害受
け取り部13により障害通知を受け取る。ただし、上述
したように、計算機2と3のみがこの障害通知を受け取
り、計算機4は障害通知を受け取ることができない。ス
テップS9において、計算機1以外の計算機は障害通知
部B15により他計算機に障害通知(一斉同報)を行
う。ただし、計算機4は障害情報が通知されていないの
で、他計算機に対して通知を行わない。従って、この場
合、図5に示すように計算機2は計算機3および計算機
4に障害通知を行い、計算機3は計算機2および計算機
4に対して障害通知を行う。この結果、ステップS11
において、計算機2、3、4は障害情報を受け取る。こ
のように、通信路が正常に機能している場合には、障害
を発生した計算機から直接障害情報を受け取り、通信路
が不能の場合には、障害を発生した計算機から発せられ
た障害情報が他計算機を介して迂回通知される。このた
め、少なくとも正常に機能している通信路が1本あれ
ば、迂回通知により障害情報を受け取ることができ、信
頼性の高い障害通知方式が得られる。
FIGS. 2 to 5 are a flowchart and a conceptual diagram showing the operation of the failure notification system according to the present invention. Less than,
The operation of the failure notification system according to the present invention will be described with reference to FIGS. Now, in step S1 of FIG.
It is assumed that a failure has occurred in the computer 1. This failure is detected by the failure detection unit 9 of the computer 1 in step S3. In this state, it is assumed that the communication path 17 connecting the computer 1 and the computer 4 is in a communication disabled state as shown in FIG. In step S5 of FIG.
Notifies the directly connected computer of the failure by the failure notification unit A11. That is, as shown in FIG. 4, the computer 1 notifies the computer 2, the computer 3, and the computer 4 of a failure (simultaneous broadcast), but the communication path 17 connecting the computer 1 and the computer 4 cannot communicate anymore. This failure notification is notified only to the computer 2 and the computer 3, but not to the computer 4.
In step S7, the computers other than the computer 1 receive the failure notification from the failure receiving unit 13. However, as described above, only the computers 2 and 3 receive the failure notification, and the computer 4 cannot receive the failure notification. In step S9, the computers other than the computer 1 perform a failure notification (broadcast) to other computers by the failure notification unit B15. However, the computer 4 does not notify other computers because the failure information is not notified. Therefore, in this case, as shown in FIG. 5, the computer 2 notifies the computer 3 and the computer 4 of a failure, and the computer 3 notifies the computer 2 and the computer 4 of a failure. As a result, step S11
, The computers 2, 3, and 4 receive the failure information. As described above, when the communication path is functioning normally, the failure information is directly received from the failed computer, and when the communication path is not available, the failure information issued from the failed computer is received. A detour is notified via another computer. Therefore, if there is at least one normally functioning communication path, failure information can be received by detour notification, and a highly reliable failure notification method can be obtained.

【0011】上述したように、上記実施例によれば、複
数の計算機を接続したHAシステムにおいて、障害は発
生した計算機は自計算機と通信路を介して接続されたす
べての他の計算機に障害情報を通知(一斉同報)する。
障害情報を受け取った計算機は、それぞれ、自己の計算
機に接続される他計算機にさらに一斉同報する。障害が
発生した計算機を除くすべての計算機に障害情報が迂回
通知されるまで、上記一斉同報を繰り返す。なお、この
場合、各計算機間で一斉同報の通知がループすることが
考えられるが、それは例えば、各ノード内に送信記録テ
ーブルを持つことにより防止てきる。
As described above, according to the above-described embodiment, in the HA system in which a plurality of computers are connected, the computer in which the failure has occurred transmits the failure information to all the other computers connected to the own computer via the communication path. (Broadcast).
Each computer that has received the failure information further broadcasts simultaneously to other computers connected to its own computer. The above simultaneous broadcast is repeated until the failure information is notified to all the computers except the computer in which the failure has occurred. In this case, it is conceivable that the notification of the broadcast is looped between the computers, but this can be prevented by, for example, having a transmission record table in each node.

【0012】図6乃至図9はこの発明の他の実施例を示
す概念図である。図1乃至図5に示す第1実施例ではH
Aシステムは4台で構成されている。上述したように、
障害情報を迂回通知する場合、最小限のステップ数で全
計算機に通知されることが望ましい。図6乃至図9に示
す第2実施例は8台の計算機で構成されたHAシステム
を示している。1台の計算機に接続可能な通信路の数に
制約がある場合には、接続形態を最適にすることで、最
小限のステップ数で全計算機に通知することが可能とな
る。例えば、1台の計算機に3本の通信路が接続できる
場合には、4台の計算機であれば、それぞれ他計算機と
1対1に接続できるが、8台構成の場合には1対1には
接続できない。第2実施例は最小限の迂回で障害情報を
通知することができる例を示す。
FIGS. 6 to 9 are conceptual diagrams showing another embodiment of the present invention. In the first embodiment shown in FIGS.
The A system is composed of four units. As mentioned above,
In the case of notifying the detour of the fault information, it is desirable to notify all the computers with the minimum number of steps. The second embodiment shown in FIGS. 6 to 9 shows an HA system constituted by eight computers. If there is a restriction on the number of communication paths that can be connected to one computer, it is possible to notify all computers with a minimum number of steps by optimizing the connection form. For example, when three communication paths can be connected to one computer, four computers can be connected one-to-one with other computers, but in an eight-computer configuration, they can be connected one-to-one. Cannot connect. The second embodiment shows an example in which fault information can be notified with a minimum detour.

【0013】図6に示すように各計算機は星型(スター
ネットワーク)に接続される。各計算機はそれぞれ隣接
する計算機および対向する計算機と接続される。例え
ば、計算機21は計算機23および35と接続されると
ともに、計算機29に接続される。このような構成で
は、各通信線が正常に機能している場合には最大2回で
障害情報の通知が可能であり、通信線が不能の場合でも
最大3回の計算機間通信ですべての計算機に障害情報が
通知可能である。以下、具体例を挙げて説明する。
As shown in FIG. 6, each computer is connected to a star (star network). Each computer is connected to an adjacent computer and an opposite computer. For example, the computer 21 is connected to the computers 23 and 35 and also to the computer 29. In such a configuration, when each communication line is functioning normally, the failure information can be notified up to twice, and even when the communication line is disabled, all the computers can communicate with each other up to three times. Can be notified of failure information. Hereinafter, a specific example will be described.

【0014】今、計算機35に障害が発生し、すべての
通信路が正常であるとすると、計算機35は計算機2
1、33および27に障害情報を直接通知する。この段
階では、計算機23、25、29、31には障害情報は
通知されていない。次に、計算機21は計算機23、2
9に通知し、計算機33は計算機31、25に通知し、
計算機27は計算機25、29に通知する。この結果、
計算機21、33、27は1回の計算機間通信で障害が
通知され、計算機23、25、29、31は2回の計算
機間通信で障害が通知される。したがって、各通信路が
正常に動作している場合には、最大2回の計算機間通信
で障害が通知可能である。
Now, assuming that a failure has occurred in the computer 35 and all communication paths are normal, the computer 35
1, 33 and 27 are notified of the fault information directly. At this stage, the failure information has not been notified to the computers 23, 25, 29, 31. Next, the computer 21 is connected to the computers 23, 2
9, the computer 33 notifies the computers 31, 25,
The computer 27 notifies the computers 25 and 29. As a result,
The computers 21, 33, and 27 are notified of the failure by one inter-computer communication, and the computers 23, 25, 29, and 31 are notified of the failure by two inter-computer communications. Therefore, when each communication path is operating normally, a failure can be notified by a maximum of two inter-computer communications.

【0015】一方、図6に示すように、今通信路17が
不能であるとする。この場合、図7に示すように計算機
35は計算機21および33に障害を通知する。2回目
の計算機間通信で、計算機21は計算機23おおよび計
算機29に障害情報を通知し、計算機33は計算機31
および計算機25に障害情報を通知する。したがって、
2回目の計算機間通信で障害が通知されていない計算機
は計算機27だけである。3回目の計算機間通信では、
図9に示すように、計算機23は計算機21、25、3
1に障害情報を通知し、計算機25は計算機23、2
7、33に通知し、計算機29は計算機27、21、3
1に通知し、計算機31は計算機23、33、29に通
知する。図9において、各計算機内に示される数字は、
障害情報の受けるまでの計算機間通信の回数を示す。同
図から明らかなように、この発明によれば通信路が不能
になっても、最大3回の計算機間通信により最大3回の
計算機間通信ですべての計算機に障害情報を通知するこ
とができる。
On the other hand, as shown in FIG. 6, it is assumed that the communication path 17 is now disabled. In this case, the computer 35 notifies the computers 21 and 33 of the failure as shown in FIG. In the second inter-computer communication, the computer 21 notifies the computer 23 and the computer 29 of the failure information, and the computer 33 sends the computer 31
And notifies the computer 25 of the failure information. Therefore,
Only the computer 27 is not notified of the failure in the second inter-computer communication. In the third inter-computer communication,
As shown in FIG. 9, the computer 23 includes computers 21, 25, 3
1 is notified of the failure information, and the computer 25
7 and 33, and the computer 29 sends the information to the computers 27, 21, 3
1 and the computer 31 notifies the computers 23, 33 and 29. In FIG. 9, the numbers shown in each computer are:
Shows the number of inter-computer communications until failure information is received. As can be seen from the figure, according to the present invention, even if a communication path becomes unavailable, fault information can be notified to all computers by a maximum of three inter-computer communications by a maximum of three inter-computer communications. .

【0016】[0016]

【発明の効果】上述したように、この発明によれば、障
害が発生した計算機からの障害情報の直接通知に加え
て、他の計算機からの迂回通知を受け取ることができる
ので、ある通信路が通信不能になった場合でも他の通信
路から障害通知を得ることができ、信頼性の高い障害通
知が可能となる。
As described above, according to the present invention, in addition to the direct notification of the fault information from the failed computer, a detour notification from another computer can be received. Even when communication becomes unavailable, a failure notification can be obtained from another communication path, and a highly reliable failure notification can be made.

【図面の簡単な説明】[Brief description of the drawings]

【図1】この発明の障害通知方式が適用されるHAシス
テムの機能ブロック図。
FIG. 1 is a functional block diagram of an HA system to which a failure notification method according to the present invention is applied.

【図2】図1に示すHAシステムにおける障害通知の動
作を示すフローチャート。
FIG. 2 is a flowchart showing an operation of a failure notification in the HA system shown in FIG. 1;

【図3】図1に示すHAシステムにおいて、計算機に障
害が発生するとともに、通信路が不能になった場合の障
害通知の動作を示す概念図。
FIG. 3 is a conceptual diagram showing a failure notification operation when a failure occurs in a computer and a communication path becomes unavailable in the HA system shown in FIG. 1;

【図4】図1に示すHAシステムにおいて、計算機に障
害が発生するとともに、通信路が不能になった場合の障
害通知の動作を示す概念図。
FIG. 4 is a conceptual diagram showing a failure notification operation when a failure occurs in a computer and a communication path becomes unavailable in the HA system shown in FIG. 1;

【図5】図1に示すHAシステムにおいて、計算機に障
害が発生するとともに、通信路が不能になった場合の障
害通知の動作を示す概念図。
FIG. 5 is a conceptual diagram showing a failure notification operation when a failure occurs in a computer and a communication path becomes unavailable in the HA system shown in FIG. 1;

【図6】この発明の他の実施例を示す概念図であり、8
台の計算機から構成されるHAシステムにおいて、障害
が発生した場合の障害通知の動作を示す概念図。
FIG. 6 is a conceptual diagram showing another embodiment of the present invention;
FIG. 4 is a conceptual diagram showing a failure notification operation when a failure occurs in an HA system including two computers.

【図7】この発明の他の実施例を示す概念図であり、8
台の計算機から構成されるHAシステムにおいて、障害
が発生した場合の障害通知の動作を示す概念図。
FIG. 7 is a conceptual diagram showing another embodiment of the present invention;
FIG. 4 is a conceptual diagram showing a failure notification operation when a failure occurs in an HA system including two computers.

【図8】この発明の他の実施例を示す概念図であり、8
台の計算機から構成されるHAシステムにおいて、障害
が発生した場合の障害通知の動作を示す概念図。
FIG. 8 is a conceptual diagram showing another embodiment of the present invention.
FIG. 4 is a conceptual diagram showing a failure notification operation when a failure occurs in an HA system including two computers.

【図9】この発明の他の実施例を示す概念図であり、8
台の計算機から構成されるHAシステムにおいて、障害
が発生した場合の障害通知の動作を示す概念図。
FIG. 9 is a conceptual diagram showing another embodiment of the present invention;
FIG. 4 is a conceptual diagram showing a failure notification operation when a failure occurs in an HA system including two computers.

【図10】従来のHAシステムにおける障害通知の方法
を説明するための概念図。
FIG. 10 is a conceptual diagram for explaining a failure notification method in a conventional HA system.

【符号の説明】[Explanation of symbols]

1、3、5、7…計算機 9…障害検出部 11…障害通知部A 13…障害受け取り部 15…障害通知部B 17…通信路 21、23、25、27、29、31、33、35…計
算機
1, 3, 5, 7 Computer 9 Fault detection unit 11 Fault notification unit 13 Fault reception unit 15 Fault notification unit B 17 Communication path 21, 23, 25, 27, 29, 31, 33, 35 …calculator

Claims (2)

【特許請求の範囲】[Claims] 【請求項1】複数の計算機が通信路を介して接続された
ネットワークシステムにおいて、前記各計算機は自計算
機内の障害を検出する障害検出手段と;自計算機の障害
を前記通信路を介して他の計算機へ通知する障害通知手
段と;他計算機からの障害通知を受け取る障害受け取り
手段と;受け取った障害通知を他計算機へ通知する手段
とを備え、 前記複数の計算機のいずれかに障害が発生したことを前
記障害検出手段により検出し、前記通知手段により前記
通信路を介して接続された他の複数の計算機に障害通知
を一斉同報し、前記障害受け取り手段により前記障害通
知を受け取った計算機は、それぞれ他計算機への通知手
段によりそれぞれ自計算機と通信路を介して接続された
他計算機に一斉同報することにより迂回通知を行う障害
通知方式。
In a network system in which a plurality of computers are connected via a communication path, each of the computers detects a fault in the own computer; and a fault detecting means for detecting a fault in the own computer via the communication path. A failure notification unit for notifying the other computer; a failure receiving unit for receiving a failure notification from another computer; and a unit for notifying the received failure notification to another computer, and a failure has occurred in any of the plurality of computers. The failure detecting means detects the failure, broadcasts a failure notification to the other computers connected via the communication path by the notification means, and receives the failure notification by the failure receiving means. A failure notification method that performs a detour notification by simultaneously broadcasting to another computer connected to the own computer via a communication path by a notification means to the other computer. formula.
【請求項2】前記各計算機は、自計算機が一斉同報した
障害通知を記憶する手段を有し、他計算機から受け取っ
た障害通知が、自計算機が一斉同報した障害通知と同じ
である場合、前記受け取った障害通知を他計算機へ一斉
同報しない手段をさらに有することを特徴とする請求項
1記載の障害通知方式。
2. Each of the computers has means for storing a failure notification broadcasted by its own computer, and a failure notification received from another computer is the same as the failure notification broadcasted by its own computer. 2. The failure notification system according to claim 1, further comprising means for not simultaneously broadcasting the received failure notification to another computer.
JP9346374A 1997-12-16 1997-12-16 Failure information system by alternative information Pending JPH11175489A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9346374A JPH11175489A (en) 1997-12-16 1997-12-16 Failure information system by alternative information

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9346374A JPH11175489A (en) 1997-12-16 1997-12-16 Failure information system by alternative information

Publications (1)

Publication Number Publication Date
JPH11175489A true JPH11175489A (en) 1999-07-02

Family

ID=18382996

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9346374A Pending JPH11175489A (en) 1997-12-16 1997-12-16 Failure information system by alternative information

Country Status (1)

Country Link
JP (1) JPH11175489A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1296829C (en) * 2000-06-05 2007-01-24 松下电器产业株式会社 Receiving/storing device, transmission device, baoadcasting system, receiving/storing method, transmission method, baoadcasting method, programme and medium
JP6138308B1 (en) * 2016-03-22 2017-05-31 三菱電機株式会社 In-vehicle control device and ROM for in-vehicle control device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1296829C (en) * 2000-06-05 2007-01-24 松下电器产业株式会社 Receiving/storing device, transmission device, baoadcasting system, receiving/storing method, transmission method, baoadcasting method, programme and medium
JP6138308B1 (en) * 2016-03-22 2017-05-31 三菱電機株式会社 In-vehicle control device and ROM for in-vehicle control device
JP2017173947A (en) * 2016-03-22 2017-09-28 三菱電機株式会社 On-vehicle controller and rom for on-vehicle controller

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