IP Library › Granted Patent US 11,038,216
Granted Patent B2
US 11,038,216 · App. 16/341,210 · Granted Jun 15, 2021

Wireless battery management system and battery pack including same

Inventors: Jung-Hyun Kwon (Daejeon, KR); Chan-Ha Park (Daejeon, KR); Sang-Hoon Lee (Daejeon, KR); Yean-Sik Choi (Daejeon, KR)
H01M10/482B60L50/50H02J7/00H02J7/0026H02J7/00036H01M2010/4271
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Quick Facts
Patent No.
US 11,038,216
App. No.
16/341,210
Granted
Jun 15, 2021
Kind
B2
Abstract

Disclosed herein are a wireless battery management system (BMS) and a battery pack including the same. The wireless BMS includes a plurality of slave BMSs installed and coupled to a plurality of battery modules of the battery pack in one-to-one correspondence, and a master BMS configured to wirelessly transmit a trigger signal to the plurality of slave BMSs for identification (ID) allocation to each of the plurality of slave BMSs. Each slave BMS is configured to generate a response signal including a respective allocated temporary ID in response to the trigger signal, and wirelessly transmit the response signal to the master BMS. For each given slave BMS, the master BMS is configured to receive the response signal from of the given slave BMS, and determine a formal ID to be allocated to the given BMS based on a received signal strength of the response signal.

Claims (43)

1. A wireless battery management system (BMS) comprising:

a plurality of slave BMSs which are coupled to a plurality of battery modules in one-to-one correspondence, wherein each slave BMS of the plurality of slave BMSs includes a slave antenna; and

a master BMS including a first master antenna, and configured to wirelessly transmit a trigger signal to each of the plurality of slave BMSs, wherein the trigger signal is for identification (ID) allocation to each slave BMS of the plurality of slave BMSs,

wherein each slave BMS of the plurality of slave BMSs is configured to:

generate a response signal including an allocated temporary ID in response to the trigger signal, wherein each slave BMS has a different temporary ID, and

wirelessly transmit the response signal to the master BMS, and

wherein the master BMS is configured to:

receive the response signals from all of the plurality of slave BMSs through the first master antenna, and

for each given slave BMS of the plurality of slave BMSs, determine a formal ID to be allocated to the given slave BMS, wherein a different formal ID is allocated to each slave BMS of the plurality of slave BMSs, and wherein the formal ID for the given slave BMS is based on a received signal strength of the response signal transmitted from the given slave BMS and received through the first master antenna.

2. The wireless BMS according to claim 1 , wherein the master BMS is further configured to:

generate a plurality of allocation signals, each allocation signal including a different determined formal ID, and

wirelessly transmit the plurality of allocation signals to the plurality of slave BMSs in one-to-one correspondence.

3. The wireless BMS according to claim 2 , wherein for each given slave BMS, the given slave BMS is further configured to replace its temporary ID with the formal ID included in the allocation signal transmitted to the given slave BMS.

4. The wireless BMS according to claim 1 , wherein each slave BMS further comprises:

a slave memory in which preset transmission power information and the allocated temporary ID are stored;

a slave communication unit configured to:

transmit the response signal, and

receive the trigger signal using the slave antenna; and

a slave control unit configured to:

generate the response signal including the temporary ID when receiving the trigger signal, and

supply the slave antenna with transmission power corresponding to the preset transmission power information to wirelessly transmit the response signal to the master BMS,

wherein the slave communication unit is further configured to transmit the response signal through the slave antenna using the transmission power supplied to the slave antenna.

5. The wireless BMS according to claim 4 , wherein the master BMS further comprises:

a master memory in which an ID allocation table is stored, wherein the ID allocation table includes:

a plurality of reference signal strengths respectively preset to the plurality of slave BMSs; and

a plurality of candidate IDs mapped to the plurality of reference signal strengths in one-to-one correspondence;

a master communication unit configured to:

transmit the trigger signal to each slave BMS, and

receive the response signals from all of the plurality of slave BMSs using the first master antenna; and

a master control unit configured to:

measure the respective received signal strengths of all of the response signals received from the plurality of slave BMSs through the first master antenna, and

for each one of the plurality of candidate IDs, designate the candidate ID as a formal ID to be allocated to a corresponding slave BMS based on a difference between the received signal strength of the response signal from the given slave BMS and an associated reference signal strength included in the ID allocation table.

6. The wireless BMS according to claim 5 , wherein the response signal further comprises the preset transmission power information, and

the ID allocation table further comprises a plurality of reference transmission power information mapped to the plurality of reference signal strengths in one-to-one correspondence.

7. The wireless BMS according to claim 6 , wherein the master BMS is further configured to determine the formal ID to allocate to each slave BMS further based on the preset transmission power information.

8. The wireless BMS according to claim 7 , wherein when two or more reference signal strengths of the plurality of reference signal strengths included in the ID allocation table have a difference that is less than a threshold from the received signal strength of a received response signal, the master BMS is further configured to:

select one set of reference transmission power information having a smallest difference from the preset transmission power information from among two or more sets of reference transmission power information mapped to the two or more reference signal strengths, and

determine a candidate ID mapped to the respective selected set of reference transmission power information as the formal ID to be allocated to the given slave BMS.

9. The wireless BMS according to claim 1 , wherein the master BMS further comprises:

a second master antenna disposed at a location that is different from a location where the first master antenna is disposed.

10. The wireless BMS according to claim 9 , wherein the master BMS is further configured to:

receive the response signals from all of the plurality of slave BMSs through the second master antenna, and

for each given slave BMS, determine the formal ID to be allocated to the given slave BMS further based on the received signal strength of the response signal received from the given slave BMS through the second master antenna.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: LG CHEM, LTD.
To: LG ENERGY SOLUTION, LTD.
Reel/Frame 058295/0068 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 31, 2019
From: KWON, JUNG-HYUN; PARK, CHAN-HA; LEE, SANG-HOON; CHOI, YEAN-SIK
To: LG CHEM, LTD.
Reel/Frame 049330/0786 →
Priority Claims (1)
KR 10-2017-0085998 · Jul 6, 2017 · national
Continuity (1)
Related Publication 20190260097A1 · Aug 22, 2019
Cited By (5)
US 12,252,035 US 12,257,921 US 12,265,128 US 12,669,544 US 12,677,126