When the "Dynamic Load Management" logic is triggered, what steps does the system follow for load control?
① Maintain currently active smart plug loads to ensure the minimum operating time is met;
② Reduce the charging power of Tesla vehicles and the operating power of heat pumps;
③ If the total power consumption is still too high, turn off smart plug loads in ascending order of priority.
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How does the system coordinate when all load control logics are triggered simultaneously?
The system coordinates automatically. The "Usage Plan" defines the user's expected outcomes, while "Surplus Energy", "Negative Electricity Price", and "Dynamic Load Management" are higher-priority optimization and protection mechanisms to ensure ...
Which core logics does Zendure HEMS primarily follow for load control?
Four core logics: Usage Plan, Surplus Energy, Negative Electricity Price, and Dynamic Load Management. These logics work together to balance demand, costs, PV utilization, and electrical safety.
What is the "Usage Plan" logic and how does it affect load control?
It defines the user's expected outcomes. The system schedules load operation times based on electricity prices, energy storage, PV, and grid status to ensure needs are met (e.g., fully charged vehicle, hot water) before the user-specified time ...
What is the main purpose of the "Dynamic Load Management" logic?
It predicts the total power consumption of controllable and uncontrollable loads, ensuring the total does not exceed the tripping threshold of the main house circuit breaker to prevent circuit overload tripping and ensure electrical safety.
Will it affect load control if Tesla vehicles, heat pumps, or smart plugs go offline?
Yes, it will. When a device is offline, the system will not include that device in load control when refreshing the plan.
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