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@ -343,19 +343,28 @@ local function calculateFieldInput()
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-- Total input needed
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-- Total input needed
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local totalInput = baseInput + correction
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local totalInput = baseInput + correction
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-- SAFETY: Never return less than the drain rate (would cause field to drop)
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-- If field is above target, allow input to go very low (just above drain rate)
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-- Add 10% safety margin, but ensure minimum of 1M RF/t during warmup when drain is 0
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-- If field is below target, ensure minimum input to build field
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local minimumInput = math.max(drainRate * 1.1, 1000000)
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local minimumInput
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if currentStrength > targetStrength then
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-- Above target - only maintain drain rate, let field drop
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minimumInput = drainRate * 1.1
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else
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-- Below target - ensure some input even if drain is 0
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minimumInput = math.max(drainRate * 1.1, 1000000)
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end
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local result = math.max(minimumInput, math.floor(totalInput))
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local result = math.max(0, math.floor(math.max(minimumInput, totalInput)))
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-- Verbose output
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-- Verbose output
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local fieldPct = string.format("%.1f%%", currentStrength * 100)
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local fieldPct = string.format("%.1f%%", currentStrength * 100)
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local targetPct = string.format("%.1f%%", targetStrength * 100)
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local targetPct = string.format("%.1f%%", targetStrength * 100)
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if currentStrength < targetStrength - 0.01 then
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if currentStrength < targetStrength - 0.01 then
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print("[FIELD] " .. fieldPct .. " < " .. targetPct .. " target -> increasing input to " .. formatNumber(result) .. " RF/t")
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print("[FIELD] " .. fieldPct .. " < " .. targetPct .. " target -> increasing input to " .. formatNumber(result) .. " RF/t (drain=" .. formatNumber(drainRate) .. ")")
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elseif currentStrength > targetStrength + 0.01 then
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elseif currentStrength > targetStrength + 0.01 then
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print("[FIELD] " .. fieldPct .. " > " .. targetPct .. " target -> reducing input to " .. formatNumber(result) .. " RF/t")
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print("[FIELD] " .. fieldPct .. " > " .. targetPct .. " target -> reducing input to " .. formatNumber(result) .. " RF/t (drain=" .. formatNumber(drainRate) .. ")")
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else
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print("[FIELD] " .. fieldPct .. " at target -> maintaining " .. formatNumber(result) .. " RF/t")
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end
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end
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return result
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return result
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