JPH08163705A - Battery remaining capacity display unit for electric vehicle - Google Patents

Battery remaining capacity display unit for electric vehicle

Info

Publication number
JPH08163705A
JPH08163705A JP6303502A JP30350294A JPH08163705A JP H08163705 A JPH08163705 A JP H08163705A JP 6303502 A JP6303502 A JP 6303502A JP 30350294 A JP30350294 A JP 30350294A JP H08163705 A JPH08163705 A JP H08163705A
Authority
JP
Japan
Prior art keywords
battery
remaining capacity
discharge amount
unit
capacity display
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.)
Granted
Application number
JP6303502A
Other languages
Japanese (ja)
Other versions
JP3360446B2 (en
Inventor
Tsuyoshi Sodeno
強 袖野
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.)
Nissan Motor Co Ltd
Original Assignee
Nissan Motor Co Ltd
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 Nissan Motor Co Ltd filed Critical Nissan Motor Co Ltd
Priority to JP30350294A priority Critical patent/JP3360446B2/en
Publication of JPH08163705A publication Critical patent/JPH08163705A/en
Application granted granted Critical
Publication of JP3360446B2 publication Critical patent/JP3360446B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Abstract

PURPOSE: To display the remaining capacity of a battery in predetermined relation to the actual remaining capacity until it becomes empty despite the deteriorated state of the battery by integrating the discharge current of the battery from the first after the battery is charged, and comparing the threshold value of the battery power decrease with the battery power. CONSTITUTION: A voltmeter 2 monitors the voltage of a battery 1. An ammeter 3 monitors the current of the battery 1. The detection signals of the voltmeter 2 and the ammeter 3 are applied to a power detector 4 to monitor the present power of the battery 1. The signal of the ammeter 3 is also given to a discharge amount integrator 5 to monitor the discharge amount integrated value in each cycle. A comparator 7 decides that the charge of certain cycle is completed and after traveling, the battery power decreases from a threshold value, and stores the discharge amount integrated value Ic from the initial after this time charging. Thereafter, the battery is recharged, a remaining capacity display curve setter 9 decides this time full charge capacity from the Ic, and copes with between the full scale and the empty of a remaining capacity display meter 11.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】この発明は、電気自動車のバッテ
リ残容量表示装置に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a battery remaining capacity display device for an electric vehicle.

【0002】[0002]

【従来の技術】電気自動車はバッテリを駆動源とするた
め、運転席に設置されるバッテリ残容量表示装置にはバ
ッテリの残容量が正確に表示されることが望まれる。
2. Description of the Related Art Since an electric vehicle uses a battery as a driving source, it is desired that the remaining battery capacity display device installed in the driver's seat accurately display the remaining battery capacity.

【0003】そこで従来からバッテリから出る電流を計
測し、その電流の積算値を放電量積算値として求め、図
4に示すように、新品時の満充電時の放電可能量2fか
らこの放電量積算値を減算することによってバッテリの
残容量を求め、これを満充電時の放電可能量をフルスケ
ールFにした比率にしてバッテリ残容量計に表示させて
いる。
Therefore, conventionally, the current from the battery is measured, the integrated value of the current is obtained as the discharge amount integrated value, and as shown in FIG. 4, the discharge amount integrated from the dischargeable amount 2f at the time of full charge of a new product. The remaining capacity of the battery is obtained by subtracting the value, and the remaining capacity of the battery is displayed on the remaining battery capacity meter as a ratio of the dischargeable amount when fully charged to the full scale F.

【0004】しかしながら、バッテリの残容量がある程
度少なくなると、その残容量で最寄りのサービスステー
ションや家に帰るまでの距離Dだけ走行できるようにバ
ッテリパワーを監視していて、バッテリパワーPがあら
かじめ設定されているしきい値Thを切ると警報を発
し、このしきい値Thを切った時点から後は、バッテリ
の劣化状態に関係なく一定の距離Dだけ走行すれば残容
量がEとなるような比率で残容量を表示するようにして
いる。
However, when the remaining capacity of the battery decreases to some extent, the battery power is monitored so that the user can travel the distance D until returning to the nearest service station or home with the remaining capacity, and the battery power P is preset. When the threshold Th is exceeded, an alarm is issued, and after the threshold Th is exceeded, the remaining capacity becomes E when the vehicle travels a certain distance D regardless of the deterioration state of the battery. The remaining capacity is displayed with.

【0005】[0005]

【発明が解決しようとする課題】ところが、このような
従来の電気自動車のバッテリ残容量表示装置では、バッ
テリを満充電しても、新品時と劣化が進んだ時とでは、
パワーの落ち具合が異なり、図4(a)に示すように新
品時にはしきい値Thを切るのが1fの点であった場
合、劣化が進むと1eの点にまで早まる。このことは、
運転者側から残容量表示を見ていると、図4(b)に示
すように、新品時には1fの点まで残容量指示が下がっ
て始めて警報が出るのであるが、劣化が進んだ状態では
残容量指示が1eとなれば警報が出ることになり、運転
者にとってはまだまだ残容量があると考えて遠出をして
いたのに残容量表示が急激に下がり出すことになってし
まい、あわてさせられてしまうことになっていた。
However, in such a conventional battery remaining capacity display device for an electric vehicle, there is a difference between when the battery is fully charged and when it is deteriorated.
When the new product is new and the threshold value Th is below 1f as shown in FIG. 4 (a), if the deterioration progresses, the deterioration progresses to 1e. This is
When looking at the remaining capacity display from the driver's side, as shown in FIG. 4 (b), when the product is new, the remaining capacity indication goes down to point 1f and the alarm is first issued, but in the state where deterioration has progressed If the capacity indication becomes 1e, an alarm will be issued, and the driver thinks that there is still remaining capacity, but has made a distant trip, but the remaining capacity display suddenly begins to fall, so it is a hassle. It was supposed to end up.

【0006】この発明は、このような従来の問題点に鑑
みてなされたもので、バッテリの劣化状態に関わらずE
(エンプティ)になるまで実際のバッテリ残容量と一定
の関係で残容量表示ができる電気自動車のバッテリ残容
量表示装置を提供することを目的とする。
The present invention has been made in view of the above-mentioned problems of the prior art, and is irrespective of the deterioration state of the battery.
It is an object of the present invention to provide a battery remaining capacity display device for an electric vehicle capable of displaying the remaining capacity in a fixed relationship with the actual remaining battery capacity until it becomes (empty).

【0007】[0007]

【課題を解決するための手段】この発明の電気自動車の
バッテリ残容量表示装置は、バッテリの充電後の最初か
ら当該バッテリの放電電流を積算する放電量積算部と、
バッテリのパワーを検出するパワー検出部と、バッテリ
パワー低下のしきい値を設定するしきい値設定部と、し
きい値設定部が設定するしきい値とパワー検出部が検出
するバッテリパワーとを比較する比較部と、この比較部
の比較においてバッテリパワー検出値がしきい値を切っ
た時に、放電量積算部が積算している放電量積算値を記
憶する記憶部と、記憶部が記憶する放電量積算値を基準
にして次回の充電後に許容される放電許容量を算出し、
当該放電許容量をフルスケールにした残容量表示曲線を
設定する残容量表示曲線設定部と、放電量積算部が積算
する放電量積算値を残容量表示曲線設定部が設定した残
容量表示曲線上のどの位置に該当するかを表示する残容
量表示部とを備えたものである。
A battery remaining capacity display device for an electric vehicle according to the present invention comprises a discharge amount integrating portion for integrating the discharge current of the battery from the beginning after charging the battery,
A power detection unit that detects the power of the battery, a threshold setting unit that sets a threshold for battery power drop, a threshold set by the threshold setting unit, and a battery power that the power detection unit detects A comparison unit for comparison, a storage unit for storing the discharge amount integrated value accumulated by the discharge amount accumulation unit when the battery power detection value falls below a threshold value in the comparison of this comparison unit, and a storage unit for storing Calculate the allowable discharge amount after the next charge based on the discharge amount integrated value,
On the remaining capacity display curve setting part that sets the remaining capacity display curve that sets the discharge allowable amount to full scale, and the remaining capacity display curve set by the remaining capacity display curve setting part And a remaining capacity display section for displaying which position of the table corresponds to.

【0008】[0008]

【作用】この発明の電気自動車のバッテリ残容量表示装
置では、バッテリ充電後の最初から当該バッテリの放電
電流を放電量積算部によって積算していく一方、パワー
検出部によってバッテリのパワーを検出しておき、比較
部においてこのバッテリパワー検出値をしきい値設定部
から与えられるしきい値と比較し、バッテリパワー検出
値がしきい値を切った時に、記憶部に放電量積算部がそ
れまでに積算している放電量積算値を記憶する。
In the battery remaining capacity display device for an electric vehicle of the present invention, the discharge current of the battery is accumulated by the discharge amount accumulator from the beginning after the battery is charged, and the power of the battery is detected by the power detector. Then, the comparison unit compares the battery power detection value with the threshold value given from the threshold value setting unit, and when the battery power detection value falls below the threshold value, the storage unit stores the discharge amount integrating unit by then. The accumulated discharge amount integrated value is stored.

【0009】そして、バッテリが新たに満充電された後
には、残容量表示曲線設定部が前記記憶部が記憶する放
電量積算値を基準にして次回の充電後に許容される放電
許容量を算出し、当該放電許容量をフルスケールにした
残容量表示曲線を設定し、放電量積算部が満充電後に最
初から積算を開始したその放電量積算値が当該残容量表
示曲線上のどの位置に該当するかを残容量表示部によっ
て表示させる。
After the battery is fully charged again, the remaining capacity display curve setting unit calculates the allowable discharge amount after the next charge based on the integrated discharge amount value stored in the storage unit. , Set the remaining capacity display curve that full-scales the permissible discharge amount, and the discharge amount integrated value at which the discharge amount integration unit started integration from the beginning after full charge corresponds to which position on the remaining capacity display curve Is displayed on the remaining capacity display.

【0010】これによって、バッテリの劣化が進んで
も、残容量表示部にE(エンプティ)になるまで実際の
バッテリ残容量と一定の関係で残容量表示を行わせる。
As a result, even when the deterioration of the battery progresses, the remaining capacity is displayed in a constant relationship with the actual remaining capacity of the battery until the remaining capacity display section reaches E (empty).

【0011】[0011]

【実施例】以下、この発明の実施例を図に基づいて詳説
する。図1はこの発明の一実施例のブロック図を示して
おり、この実施例の電気自動車のバッテリ残量表示装置
は、バッテリ1の電圧を検出する電圧計2、電流を検出
する電流計3、これらの電圧計2と電流計3の検出信号
からバッテリパワーを検出するパワー検出部4、また電
流計3の検出信号からバッテリ1の放電量積算値を求め
る放電量積算部5を備えている。
Embodiments of the present invention will now be described in detail with reference to the drawings. FIG. 1 shows a block diagram of an embodiment of the present invention. A battery residual quantity display device for an electric vehicle of this embodiment comprises a voltmeter 2 for detecting a voltage of a battery 1, an ammeter 3 for detecting a current, A power detection unit 4 that detects battery power from the detection signals of the voltmeter 2 and the ammeter 3, and a discharge amount integration unit 5 that obtains a discharge amount integrated value of the battery 1 from the detection signals of the ammeter 3 are provided.

【0012】電気自動車のバッテリ残量表示装置はま
た、バッテリパワー低下のしきい値を設定するしきい値
設定部6、このしきい値設定部6が設定するしきい値と
パワー検出部4が検出するバッテリパワー検出値とを比
較する比較部7、この比較部7の比較においてバッテリ
パワー検出値がしきい値を切った時に、放電量積算部5
がそれまでに積算している放電量積算値を記憶する記憶
部8を備えている。
The battery remaining amount display device for an electric vehicle also includes a threshold value setting unit 6 for setting a threshold value for battery power reduction, and a threshold value setting unit 6 and a power detection unit 4. The comparing unit 7 that compares the detected battery power detection value with the discharge amount integrating unit 5 when the battery power detection value falls below the threshold value in the comparison of the comparing unit 7.
Is provided with a storage unit 8 that stores the accumulated discharge amount value accumulated up to that point.

【0013】さらに、記憶部8が記憶する放電量積算値
を基準にして、新たな充電後に許容される放電許容量を
算出し、当該放電許容量をフルスケールにした残容量表
示曲線を設定する残容量表示曲線設定部9、放電量積算
部5が積算する放電量積算値を残容量表示曲線設定部9
が設定した残容量表示曲線上のどの位置に該当するかを
演算する表示制御部10、そしてこの表示制御部10の
指示に基づいて残容量表示指針によって残容量表示を行
う残容量表示計11を備えている。
Further, the allowable discharge amount after new charging is calculated with reference to the integrated discharge amount value stored in the storage unit 8, and the remaining capacity display curve is set to the full scale of the allowable discharge amount. The remaining capacity display curve setting unit 9 and the discharge amount integration value integrated by the discharge amount integration unit 5 are used as the remaining capacity display curve setting unit 9
The display control unit 10 for calculating which position on the remaining capacity display curve set by the display control unit 10 and the remaining capacity indicator 11 for displaying the remaining capacity by the remaining capacity display pointer based on the instruction of the display control unit 10. I have it.

【0014】次に、上記構成の電気自動車のバッテリ残
容量表示装置の動作について説明する。電圧計2がバッ
テリ1の電圧を監視し、電流計3がバッテリの電流を監
視し、これらの検出信号をパワー検出部4に与えて、こ
こでバッテリ1の現在のパワーを監視する。電流計3の
検出信号はまた放電量積算部5に与えられ、ここでバッ
テリ充電後の最初からの放電量を積算して各サイクルで
の放電量積算値を監視する。
Next, the operation of the battery remaining capacity display device of the electric vehicle having the above structure will be described. The voltmeter 2 monitors the voltage of the battery 1, the ammeter 3 monitors the current of the battery, supplies these detection signals to the power detection unit 4, and monitors the current power of the battery 1 here. The detection signal of the ammeter 3 is also given to the discharge amount integrating section 5, where the discharge amount from the beginning after charging the battery is integrated and the integrated value of the discharge amount in each cycle is monitored.

【0015】しきい値設定部6にはあらかじめパワーし
きい値を設定する。
A power threshold is preset in the threshold setting unit 6.

【0016】そこであるサイクルの充電が完了して電気
自動車が走行を始めると、パワー検出部4でバッテリパ
ワーを常に検出し、比較部7でしきい値設定部6に設定
されているパワーしきい値を切るまでに低下していない
かどうか監視する。そして自動車の走行距離が延びるに
したがってバッテリ電力の消費が進み、バッテリパワー
が低下してくると、やがてしきい値Thを切るまでに低
下してくる。
When charging of a certain cycle is completed and the electric vehicle starts traveling, the power detection unit 4 constantly detects battery power, and the comparison unit 7 sets the power threshold set in the threshold value setting unit 6. Monitor for a drop before the value is cut. Then, as the traveling distance of the automobile increases, the battery power consumption increases, and when the battery power decreases, it eventually decreases until it falls below the threshold Th.

【0017】バッテリパワーがしきい値Thを切ったこ
とを比較部7が判定すれば(図2に示すフローチャート
において、ステップS1)、記憶部8は放電量積算部5
がそれまでに得ている今回の充電後の最初からの放電量
積算値Icを記憶する(ステップS2)。
When the comparison unit 7 determines that the battery power has dropped below the threshold value Th (step S1 in the flowchart shown in FIG. 2), the storage unit 8 stores the discharge amount integration unit 5.
Stores the discharge amount integrated value Ic from the beginning after the current charging, which has been obtained until then (step S2).

【0018】このしきい値Thを切ったならば、運転者
は残容量が少なくなったことを認識して最寄りのサービ
スステーションや家などの充電設備がある場所まで移動
することになる。そしてその場所に着いて再充電を行
い、再充電が完了すれば新しいサイクルの走行が開始さ
れる(ステップS3)。
When the threshold value Th is cut, the driver recognizes that the remaining capacity has decreased and moves to the nearest service station or a place where there is charging equipment such as a house. Then, when the vehicle arrives at that location and is recharged, and when the recharge is completed, a new cycle of traveling is started (step S3).

【0019】この充電後の最初に残容量表示曲線設定部
9は、今回の満充電容量Itを、 It=Ic+α とし、この満充電容量Itを残容量表示計11における
フルスケールFとエンプティEとの間に対応させる(ス
テップS4)。
First, after the charging, the remaining capacity display curve setting unit 9 sets the current full charging capacity It to It = Ic + α, and the full charging capacity It is compared with the full scale F and the empty E on the remaining capacity indicator 11. (Step S4).

【0020】ここで、αは定数であり、図3に示すしき
い値を切った後に走行可能とする距離Dに対応する電気
量であり、バッテリ1の劣化状態に関係なく一定として
いる。
Here, α is a constant, which is an electric quantity corresponding to the distance D that can be traveled after the threshold value shown in FIG. 3 is cut, and is constant regardless of the deterioration state of the battery 1.

【0021】そして、再び走行を始めれば、表示制御部
10は放電量積算部5が算出する放電量積算値Icと今
回の満充電容量Itとを用いて、残容量表示計11にお
けるフルスケールFに対する指示位置Aを、 A=(It−Ic)/It の比例式に基づいて算出し、残容量表示計11に対して
このAに対応する位置を指示する指令を与える。そして
残容量表示計11はこの指示に基づいて、満充電F−エ
ンプティEのスケールに対してAの位置、例えば、それ
が0.7であればF側から少し下がった0.7の位置を
指示し、0.5であれば半分の位置を指示する(ステッ
プS6)。
When the vehicle starts traveling again, the display control unit 10 uses the discharge amount integrated value Ic calculated by the discharge amount integrating unit 5 and the current full charge capacity It to display the full scale F in the remaining capacity indicator 11. Is calculated based on the proportional expression of A = (It-Ic) / It, and the remaining capacity indicator 11 is instructed to indicate the position corresponding to A. Based on this instruction, the remaining capacity indicator 11 moves the position A to the scale of the fully charged F-empty E, for example, if it is 0.7, the position 0.7 is slightly lowered from the F side. If it is 0.5, half the position is instructed (step S6).

【0022】このようにして、この実施例の電気自動車
のバッテリ残容量表示装置では、図3(a)に示すよう
に、新品時にバッテリパワーがしきい値Thを切った点
がa1であったとすれば、この時点での放電量積算値I
aを求めて記憶しておき、次回の満充電容量をこの放電
量積算値Iaに定数α(図3において斜線を施した部分
の面積)を加算した値、すなわち、Ia+αと推定し、
このIa+αを残容量表示計11におけるフルスケール
Fとし、充電後の放電容量積算値をこの満充電容量から
減算していくことによって現在のバッテリ残容量をF−
Eのスケール上に指示する。
As described above, in the battery residual capacity display device for an electric vehicle of this embodiment, as shown in FIG. 3A, the point at which the battery power falls below the threshold value Th when it is new is a1. If this is done, the discharge amount integrated value I at this point
a is obtained and stored, and the next full charge capacity is estimated as a value obtained by adding a constant α (area of a shaded portion in FIG. 3) to this discharge amount integrated value Ia, that is, Ia + α,
This Ia + α is used as the full scale F in the remaining capacity indicator 11, and the current remaining capacity of the battery is F− by subtracting the integrated value of the discharged capacity after charging from this full charge capacity.
Instruct on the E scale.

【0023】したがって、自動車の走行に伴い、放電量
積算値が増加していくと、図3(b)の直線A上で残容
量が減少していくことになる。同様にして、劣化がある
程度進んだ場合には直線B上で残容量が減少していくこ
とになり、さらに劣化が進むと、直線C上で残容量が減
少していくことになる。
Therefore, as the discharge amount integrated value increases as the vehicle runs, the remaining capacity decreases on the straight line A in FIG. 3 (b). Similarly, when the deterioration progresses to some extent, the remaining capacity decreases on the straight line B, and when the deterioration further progresses, the remaining capacity decreases on the straight line C.

【0024】この残容量の表示態様を従来と比較する
と、劣化が進んだ状態で、従来であれば図3(b)に示
すようにしきい値Thをパワーが切った時点の残容量表
示は1eとまたまだ大きい値であって運転者をあわてさ
せるようなことがあったのが、この実施例によれば、劣
化が進むにつれてバッテリ容量の減り方が全体的に速ま
ることになり、運転者にはどこでエンプティEになるか
を運転しながら予測させることができるようになり、あ
わてさせることがなくなる。
Comparing this display mode of the remaining capacity with the conventional one, in the state of deterioration, in the conventional case, the remaining capacity display at the time when the threshold Th is turned off is 1e as shown in FIG. 3 (b). However, according to this embodiment, the battery capacity is reduced more and more as the deterioration progresses. Will be able to predict where to become empty E while driving, and there will be no hassle.

【0025】なお、この発明は上記実施例に限定される
ことはなく、次のような構成とすることもできる。すな
わち、バッテリ充電後の最初から当該バッテリの放電電
流を放電量積算部5によって積算していく一方、パワー
検出部4によってバッテリのパワーを検出しておき、毎
回の充電後の走行毎に比較部7においてこのバッテリパ
ワー検出値をしきい値設定部6から与えられるしきい値
と比較し、バッテリパワー検出値がしきい値を切った時
に、記憶部8に毎回、放電量積算部5がそれまでに積算
している放電量積算値を記憶させていく。
The present invention is not limited to the above embodiment, but may have the following configurations. That is, the discharge current of the battery is accumulated from the beginning after the battery is charged by the discharge amount integrator 5, while the power of the battery is detected by the power detector 4 and the comparator is detected every time the vehicle is charged. In step 7, the battery power detection value is compared with the threshold value given from the threshold value setting section 6, and when the battery power detection value falls below the threshold value, the discharge amount integrating section 5 stores it in the storage section 8 every time. The accumulated discharge amount accumulated up to is stored.

【0026】そしてバッテリが新たに満充電された後に
は、それまで記憶部8に記憶されている残容量積算値を
平均化処理し、残容量表示曲線設定部9がこの平均化さ
れた放電量積算値を基準にして次回の充電後に許容され
る放電許容量を算出し、当該放電許容量をフルスケール
にした残容量表示曲線を設定し、放電量積算部5が満充
電後に最初から積算を開始したその放電量積算値が当該
残容量表示曲線上のどの位置に該当するかを残容量表示
計11によって表示させるようにすることもできる。
After the battery is fully charged again, the remaining capacity integrated value stored in the storage unit 8 until then is averaged, and the remaining capacity display curve setting unit 9 averages the discharged amount. The discharge allowable amount after the next charge is calculated based on the integrated value, the remaining capacity display curve that sets the discharge allowable amount in full scale is set, and the discharge amount integrating unit 5 performs the integration from the beginning after the full charge. It is also possible to display on the remaining capacity indicator 11 which position on the remaining capacity display curve the discharge integrated value that has started corresponds to.

【0027】これによって、バッテリの劣化が進んで
も、残容量表示部にE(エンプティ)になるまで実際の
バッテリ残容量と一定の関係で残容量表示を行わせるこ
とができるだけでなく、ある時点での再充電が不完全で
あって満充電に至っていなかったためにその次にバッテ
リパワーがしきい値を切る時点が本来よりも速まるよう
なケースが発生しても、それに柔軟に対応することがで
き、残容量表示の信頼性をいっそう高めることができる
ようになる。
As a result, even if the deterioration of the battery progresses, the remaining capacity can be displayed at a certain relationship with the actual remaining capacity of the battery until the remaining capacity display section reaches E (empty). Even if there is a case where the battery power falls below the threshold value faster than it should be because the recharging of the battery was incomplete and did not reach full charge, it is possible to respond flexibly to it. Therefore, the reliability of the remaining capacity display can be further improved.

【0028】上記の実施例の場合、平均化処理はそれま
での充電回数による単純平均を使用することができる
が、劣化が進につれてパワー減少までの時間が加速度的
に早くなる場合には、充電回数に応じた荷重平均を使用
することもできる。
In the case of the above embodiment, the averaging process can use a simple average based on the number of times of charging up to that time. However, if the time until the power decreases as the deterioration progresses is accelerated, the charging is performed. It is also possible to use a weighted average depending on the number of times.

【0029】[0029]

【発明の効果】以上のようにこの発明によれば、バッテ
リ充電後の最初から当該バッテリの放電電流を放電量積
算部によって積算していく一方、パワー検出部によって
バッテリのパワーを検出しておき、比較部においてこの
バッテリパワー検出値をしきい値設定部から与えられる
しきい値と比較し、バッテリパワー検出値がしきい値を
切った時に、記憶部に放電量積算部がそれまでに積算し
ている放電量積算値を記憶し、バッテリが新たに満充電
された後には、残容量表示曲線設定部が前記記憶部が記
憶する放電量積算値を基準にして次回の充電後に許容さ
れる放電許容量を算出し、当該放電許容量をフルスケー
ルにした残容量表示曲線を設定し、放電量積算部が満充
電後に最初から積算を開始したその放電量積算値が当該
残容量表示曲線上のどの位置に該当するかを残容量表示
部によって表示させるようにしているので、バッテリの
劣化が進んでも、残容量表示部にエンプティになるまで
実際のバッテリ残容量と一定の関係で残容量表示を行わ
せることができ、バッテリの劣化状態によらず、運転者
が残容量表示を見てどこでエンプティEになるかを運転
しながら予測させることができるようになり、従来のよ
うに予測できない早い時点で急激に残容量表示指針が速
く進むようになってあわてさせることがなくなり、残容
量表示の信頼性を高くすることができる。
As described above, according to the present invention, the discharge current of the battery is accumulated by the discharge amount accumulator from the beginning after the battery is charged, while the power of the battery is detected by the power detector. In the comparison unit, the battery power detection value is compared with the threshold value given from the threshold value setting unit, and when the battery power detection value falls below the threshold value, the storage unit accumulates the discharge amount by that time. Is stored, and after the battery is newly fully charged, the remaining capacity display curve setting unit is allowed after the next charge based on the discharge amount integrated value stored in the storage unit. Calculate the discharge allowable amount, set the remaining capacity display curve that is the discharge allowable amount in full scale, and start the integration from the beginning after the full charge by the discharge amount integration unit.The discharge amount integrated value is displayed on the remaining capacity display curve. Since the remaining capacity display section displays which position is applicable, even when the battery deterioration progresses, the remaining capacity display is displayed in a fixed relationship with the actual remaining battery capacity until the remaining capacity display section becomes empty. This allows the driver to predict where the empty E will be while driving by looking at the remaining capacity display regardless of the deterioration state of the battery. Thus, the remaining capacity display pointer rapidly advances rapidly so that there is no need to panic and the reliability of the remaining capacity display can be improved.

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

【図1】この発明の一実施例の回路ブロック図。FIG. 1 is a circuit block diagram of an embodiment of the present invention.

【図2】上記実施例の動作を示すフローチャート。FIG. 2 is a flowchart showing the operation of the above embodiment.

【図3】上記実施例の動作を示すタイミングチャート。FIG. 3 is a timing chart showing the operation of the above embodiment.

【図4】従来例の動作を示すタイミングチャート。FIG. 4 is a timing chart showing an operation of a conventional example.

【符号の説明】[Explanation of symbols]

1 バッテリ 2 電圧計 3 電流計 4 パワー検出部 5 放電量積算部 6 しきい値設定部 7 比較部 8 記憶部 9 残容量表示曲線設定部 10 表示制御部 11 残容量表示計 1 Battery 2 Voltmeter 3 Ammeter 4 Power Detection Section 5 Discharge Amount Integration Section 6 Threshold Setting Section 7 Comparison Section 8 Storage Section 9 Remaining Capacity Display Curve Setting Section 10 Display Control Section 11 Remaining Capacity Display Meter

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】 バッテリ充電後の最初から当該バッテリ
の放電電流を積算する放電量積算部と、 前記バッテリのパワーを検出するパワー検出部と、 バッテリパワー低下のしきい値を設定するしきい値設定
部と、 前記しきい値設定部が設定するしきい値と前記パワー検
出部が検出するバッテリパワーとを比較する比較部と、 前記比較部の比較において、バッテリパワー検出値が前
記しきい値を切った時に、前記放電量積算部が積算して
いる放電量積算値を記憶する記憶部と、 前記記憶部が記憶する放電量積算値を基準にして次回の
充電後に許容される放電許容量を算出し、当該放電許容
量をフルスケールにした残容量表示曲線を設定する残容
量表示曲線設定部と、 前記放電量積算部が積算する放電量積算値を前記残容量
表示曲線設定部が設定した残容量表示曲線上のどの位置
に該当するかを表示する残容量表示部とを備えて成る電
気自動車のバッテリ残容量表示装置。
1. A discharge amount integration unit that integrates a discharge current of the battery from the beginning after charging the battery, a power detection unit that detects the power of the battery, and a threshold value that sets a threshold value of battery power reduction. In the comparison of the setting unit, the threshold value set by the threshold value setting unit and the battery power detected by the power detection unit, and in the comparison of the comparison unit, the battery power detection value is the threshold value. When the battery is turned off, a storage unit that stores the integrated discharge amount value accumulated by the discharge amount integration unit, and the allowable discharge amount after the next charge based on the integrated discharge amount value stored in the storage unit And the remaining capacity display curve setting unit that sets the remaining capacity display curve that sets the discharge allowable amount to full scale, and the remaining capacity display curve setting unit that sets the discharge amount integrated value that the discharge amount integrating unit integrates. And a battery remaining capacity display device for an electric vehicle, comprising: a remaining capacity display unit that displays which position on the remaining capacity display curve.
JP30350294A 1994-12-07 1994-12-07 Battery display device for electric vehicles Expired - Fee Related JP3360446B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP30350294A JP3360446B2 (en) 1994-12-07 1994-12-07 Battery display device for electric vehicles

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP30350294A JP3360446B2 (en) 1994-12-07 1994-12-07 Battery display device for electric vehicles

Publications (2)

Publication Number Publication Date
JPH08163705A true JPH08163705A (en) 1996-06-21
JP3360446B2 JP3360446B2 (en) 2002-12-24

Family

ID=17921749

Family Applications (1)

Application Number Title Priority Date Filing Date
JP30350294A Expired - Fee Related JP3360446B2 (en) 1994-12-07 1994-12-07 Battery display device for electric vehicles

Country Status (1)

Country Link
JP (1) JP3360446B2 (en)

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1998056059A1 (en) * 1997-06-03 1998-12-10 Sony Corporation Method for detecting capacity of battery, battery package, and electronic equipment system
US6104166A (en) * 1997-10-13 2000-08-15 Toyota Jidosha Kabushiki Kaisha Method and device for detecting a state of charge of a battery assembly, and battery assembly charge and discharge control device
JP2002034164A (en) * 2000-07-12 2002-01-31 Fujitsu Ltd Electronic apparatus and power consumption measurement support system
JP2008139070A (en) * 2006-11-30 2008-06-19 Matsushita Electric Ind Co Ltd Electronic device
JP2011160635A (en) * 2010-02-04 2011-08-18 Nippon Telegr & Teleph Corp <Ntt> Storage battery charging method and photovoltaic power generation system
US10421420B2 (en) 2011-01-06 2019-09-24 Ford Global Technologies, Llc Methods and apparatus for reporting state of charge in electric vehicles
CN113126732A (en) * 2020-01-15 2021-07-16 戴尔产品有限公司 Power backup equipment charging system
CN113655399A (en) * 2021-08-16 2021-11-16 国网湖南省电力有限公司 Method and system for detecting power consumption service life of battery of intelligent sensing terminal
CN113815488A (en) * 2021-09-30 2021-12-21 华人运通(上海)新能源驱动技术有限公司 Energy distribution method and device of electric automobile and vehicle

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1998056059A1 (en) * 1997-06-03 1998-12-10 Sony Corporation Method for detecting capacity of battery, battery package, and electronic equipment system
US6313606B1 (en) 1997-06-03 2001-11-06 Sony Corporation Method and apparatus for detecting battery capacity
US6104166A (en) * 1997-10-13 2000-08-15 Toyota Jidosha Kabushiki Kaisha Method and device for detecting a state of charge of a battery assembly, and battery assembly charge and discharge control device
JP2002034164A (en) * 2000-07-12 2002-01-31 Fujitsu Ltd Electronic apparatus and power consumption measurement support system
JP2008139070A (en) * 2006-11-30 2008-06-19 Matsushita Electric Ind Co Ltd Electronic device
JP2011160635A (en) * 2010-02-04 2011-08-18 Nippon Telegr & Teleph Corp <Ntt> Storage battery charging method and photovoltaic power generation system
US10421420B2 (en) 2011-01-06 2019-09-24 Ford Global Technologies, Llc Methods and apparatus for reporting state of charge in electric vehicles
CN113126732A (en) * 2020-01-15 2021-07-16 戴尔产品有限公司 Power backup equipment charging system
CN113126732B (en) * 2020-01-15 2024-03-08 戴尔产品有限公司 Charging system for power standby equipment
CN113655399A (en) * 2021-08-16 2021-11-16 国网湖南省电力有限公司 Method and system for detecting power consumption service life of battery of intelligent sensing terminal
CN113815488A (en) * 2021-09-30 2021-12-21 华人运通(上海)新能源驱动技术有限公司 Energy distribution method and device of electric automobile and vehicle
CN113815488B (en) * 2021-09-30 2023-07-14 华人运通(上海)新能源驱动技术有限公司 Energy distribution method and device for electric automobile and vehicle

Also Published As

Publication number Publication date
JP3360446B2 (en) 2002-12-24

Similar Documents

Publication Publication Date Title
EP0481743B1 (en) Method of displaying a residual electric charge in a battery of an electrically driven vehicle
US5886527A (en) Method and device for monitoring deterioration of battery
EP1220413B1 (en) Apparatus for battery capacity measurement and for remaining capacity calculation
US6107779A (en) Apparatus for detecting remaining capacity of battery
EP0713101B1 (en) Remaining battery capacity meter and method for computing remaining capacity
US4021718A (en) Battery monitoring apparatus
US9219377B2 (en) Battery charging apparatus and battery charging method
US5723971A (en) Apparatus for charging a battery for a charge time determined based on the depth of discharge
EP1314992A2 (en) Method and device for controlling a capacity of a battery for vehicles
JP5348987B2 (en) How to detect battery deterioration
US9634498B2 (en) Electrical storage system and equalizing method
US20090027056A1 (en) Battery performance monitor
US20120098489A1 (en) Battery control system and vehicle
JPH06242193A (en) Remaining capacity meter
JP3453821B2 (en) Battery remaining capacity measurement device
JP2001004721A (en) Residual capacity measuring instrument for battery with fully-charged voltage correcting function
JPS6327776A (en) Battery charging control and diagnostic apparatus for car
EP1278072B1 (en) Device for judging life of auxiliary battery
JPH08163705A (en) Battery remaining capacity display unit for electric vehicle
US5698962A (en) Memory effect sensitive battery monitoring apparatus for electric vehicles
JP5313215B2 (en) Battery charge rate estimation device
JP3126591B2 (en) Method of estimating remaining capacity of storage battery
JP4548011B2 (en) Deterioration degree judging device
EP1100171B1 (en) Device and method for determining state of charge
US5608325A (en) Method of recalibrating a battery energy management processor

Legal Events

Date Code Title Description
FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20081018

Year of fee payment: 6

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20091018

Year of fee payment: 7

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20091018

Year of fee payment: 7

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20101018

Year of fee payment: 8

LAPS Cancellation because of no payment of annual fees